P. Achard, A. Gusti, S. Cheminant, M. Alioua, S. Dhondt et al., Gibberellin signaling controls cell proliferation rate in Arabidopsis, Current biology, vol.19, issue.14, pp.1188-93, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00408776

K. L. Adams and J. F. Wendel, Exploring the genomic mysteries of polyploidy in cotton, Biological Journal of the Linnean Society, vol.82, issue.4, pp.573-81, 2004.

L. A. Aguirrezabal, E. Deleens, and F. Tardieu, Root elongation rate is accounted for by intercepted PPFD and source-sink relations in field and laboratory-grown sunflower, Plant, Cell & Environment, vol.17, issue.4, pp.443-50, 1994.

R. Aharon, Y. Shahak, S. Wininger, R. Bendov, Y. Kapulnik et al., Overexpression of a plasma membrane aquaporin in transgenic tobacco improves plant vigor under favorable growth conditions but not under drought or salt stress. The Plant Cell, vol.15, pp.439-486, 2003.

E. Alexandersson, L. Fraysse, S. Sjövall-larsen, S. Gustavsson, M. Fellert et al., Whole gene family expression and drought stress regulation of aquaporins, Plant molecular biology, vol.59, issue.3, pp.469-84, 2005.

R. R. Allmaras, W. W. Nelson, and W. B. Voorhees, Soybean and corn rooting in southwestern Minnesota: II. Root distributions and related water inflow, Soil science society of America Journal, vol.39, issue.4, pp.771-778, 1975.

B. Aloni, R. Cohen, L. Karni, H. Aktas, and M. Edelstein, Hormonal signaling in rootstock-scion interactions, Scientia Horticulturae, vol.127, issue.2, pp.119-145, 2010.

M. Amerine and A. Winkler, Composition and quality of musts and wines of California grapes, vol.15, pp.493-675, 1944.

M. M. Alsina, D. R. Smart, T. Bauerle, D. Herralde, F. Biel et al., Seasonal changes of whole root system conductance by a drought-tolerant grape root system, Journal of Experimental Botany, vol.62, issue.1, pp.99-109, 2010.

R. Aroca, A. Ferrante, P. Vernieri, and M. J. Chrispeels, Drought, abscisic acid, and transpiration rate effects on the regulation of PIP aquaporin gene expression and abundance in Phaseolus vulgaris plants, Annals of Botany, vol.98, pp.1301-1310, 2006.

R. Aroca, R. Porcel, and J. M. Ruiz-lozano, How does arbuscular mycorrhizal symbiosis regulate root hydraulic properties and plasma membrane aquaporins in Phaseolus vulgaris under drought, cold or salinity stresses? New Phytologist, vol.173, pp.808-824, 2007.

R. Aroca, R. Porcel, and J. M. Ruiz-lozano, Regulation of root water uptake under abiotic stress conditions, Journal of experimental botany, vol.63, issue.1, pp.43-57, 2011.

R. Aroca, P. Vernieri, J. J. Irigoyen, M. Sá-nchez-d??, F. Tognoni et al., Involvement of abscisic acid in leaf and root of maize (Zea mays L.) in avoiding chilling-induced water stress, Plant Science, vol.165, issue.3, pp.671-680, 2003.

R. Aroca, P. Vernieri, and J. M. Ruiz-lozano, Mycorrhizal and nonmycorrhizal Lactuca sativa plants exhibit contrasting responses to exogenous ABA during drought stress and recovery, Journal of Experimental Botany, vol.59, pp.2029-2041, 2008.

R. Aroca, G. Amodeo, S. Fernandez-illescas, E. M. Herman, F. Chaumont et al., The role of Aquaporins and membrane damage in chilling and hydrogen peroxide induced changes in the hydraulic conductance of maize roots, Plant Physiology, vol.137, pp.341-353, 2005.

S. Asseng, L. A. Aylmore, J. S. Macfall, J. W. Hopmans, and P. J. Gregory, Computer-assisted tomography and magnetic resonance imaging, Root methods, pp.343-363, 2000.

C. J. Atkinson, M. A. Else, L. Taylor, and C. J. Dover, Root and stem hydraulic conductivity as determinants of growth potential in grafted trees of apple (Malus pumila Mill.), Journal of Experimental Botany, vol.54, issue.385, pp.1221-1230, 2003.

F. W. Badeck, A. Bondeau, K. Böttcher, D. Doktor, W. Lucht et al., Responses of spring phenology to climate change, New Phytologist, vol.162, issue.2, pp.295-309, 2004.
URL : https://hal.archives-ouvertes.fr/hal-01788265

R. A. Barcia, L. B. Pena, M. S. Zawoznik, M. P. Benavides, and S. M. Gallego, Osmotic adjustment and maintenance of the redox balance in root tissue may be key points to overcome a mild water deficit during the early growth of wheat. Plant growth regulation, vol.74, pp.107-124, 2014.

H. Bariya, S. Bagtharia, and A. Patel, Boron: A promising nutrient for increasing growth and yield of plants, Nutrient Use Efficiency in Plants, pp.153-170, 2014.

K. P. Barley, Influence of soil strength on growth of roots, Soil Science, vol.96, issue.3, pp.175-180, 1963.

P. W. Barlow and P. E. Pilet, The effect of abscisic acid on cell growth, cell division and DNA synthesis in the maize root meristem, Physiologia plantarum, vol.62, issue.2, pp.125-157, 1984.

C. W. Barney, Effects of soil temperature and light intensity on root growth of loblolly pine seedlings. Plant physiology, vol.26, p.146, 1951.

F. H. Barrios-masias, T. Knipfer, and A. J. Mcelrone, Differential responses of grapevine rootstocks to water stress are associated with adjustments in fine root hydraulic physiology and suberization, Journal of experimental botany, vol.66, issue.19, pp.6069-78, 2015.

T. I. Baskin, Patterns of root growth acclimation: constant processes, changing boundaries, Wiley Interdisciplinary Reviews: Developmental Biology, vol.2, issue.1, pp.65-73, 2013.

G. H. Bates, A device for the observation of root growth in the soil, Nature, vol.139, issue.3527, pp.966-973, 1937.

T. L. Bauerle, D. R. Smart, W. L. Bauerle, C. Stockert, and D. M. Eissenstat, Root foraging in response to heterogeneous soil moisture in two grapevines that differ in potential growth rate, New Phytologist, vol.179, issue.3, pp.857-66, 2008.

Z. G. Beamer, T. Li, J. Baudry, and D. M. Roberts, Making an Aquaporin Water-Tight: Structural Basis of Selectivity in Plant Nodulin 26 Intrinsic Proteins, Biophysical Journal, vol.108, issue.2, pp.438-447, 2015.

G. T. Beemster and T. I. Baskin, Analysis of cell division and elongation underlying the developmental acceleration of root growth in Arabidopsis thaliana. Plant physiology, vol.116, pp.1515-1541, 1998.

A. G. Bengough, M. F. Bransby, J. Hans, S. J. Mckenna, T. J. Roberts et al., Root responses to soil physical conditions; growth dynamics from field to cell, Journal of Experimental Botany, vol.57, issue.2, pp.437-484, 2005.

A. G. Bengough, B. M. Mckenzie, P. D. Hallett, and T. A. Valentine, Root elongation, water stress, and mechanical impedance: a review of limiting stresses and beneficial root tip traits, Journal of Experimental Botany, vol.62, issue.1, pp.59-68, 2011.

S. Bhogale, A. S. Mahajan, B. Natarajan, M. Rajabhoj, H. V. Thulasiram et al., MicroRNA156: a potential graft-transmissible microRNA that modulates plant architecture and tuberization in Solanum tuberosum ssp. andigena. Plant physiology, vol.164, pp.1011-1038, 2014.

G. P. Bienert and F. Chaumont, Aquaporin-facilitated transmembrane diffusion of hydrogen peroxide, Biochimica et Biophysica Acta (BBA)-General Subjects, vol.1840, issue.5, pp.1596-604, 2014.

N. L. Bindoff, J. Willebrand, V. Artale, A. Cazenave, J. Gregory et al., The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, Climate Change, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00287145

G. Benga, O. Popescu, V. Borza, V. I. Pop, A. Muresan et al., Water permeability in human erythrocytes: identification of membrane proteins involved in water transport, European journal of cell biology, vol.41, issue.2, pp.252-62, 1986.

K. Birnbaum, D. E. Shasha, J. Y. Wang, J. W. Jung, G. M. Lambert et al., A gene expression map of the Arabidopsis root, Science, vol.302, issue.5652, pp.1956-60, 2003.

J. Blaser-grill, D. Knoppik, A. Amberger, and H. Goldbach, Influence of boron on the membrane potential in Elodea densa and Helianthus annuus roots and H + extrusion of suspension cultured Daucus carota cells. Plant physiology, vol.90, pp.280-284, 1989.

D. G. Blevins and K. M. Lukaszewski, Boron in plant structure and function. Annual review of plant biology, vol.49, pp.481-500, 1998.

Y. Boursiac, J. Boudet, O. Postaire, D. T. Luu, C. Tournaire-roux et al., Stimulus-induced downregulation of root water transport involves reactive oxygen species-activated cell signalling and plasma membrane intrinsic protein internalization, The Plant Journal, vol.56, issue.2, pp.207-225, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00330107

S. M. Brady, D. A. Orlando, J. Y. Lee, J. Y. Wang, J. Koch et al., A highresolution root spatiotemporal map reveals dominant expression patterns, Science, vol.318, issue.5851, pp.801-807, 2007.

L. Brancadoro, L. Valenti, and R. A. , Rootstock effect on potassium content of grapevine, Acta Horticulturae, vol.383, pp.115-124, 1995.

W. R. Briggs and C. T. Lin, Photomorphogenesis-from one photoreceptor to 14: 40 years of progress. Molecular plant, vol.5, pp.531-533, 2012.

T. J. Brodribb and R. S. Hill, Increases in water potential gradient reduce xylem conductivity in whole plants. Evidence from a low-pressure conductivity method, Plant Physiology, vol.123, pp.1021-1028, 2000.

C. J. Brown, M. I. O'connor, E. S. Poloczanska, D. S. Schoeman, L. B. Buckley et al., Ecological and methodological drivers of species' distribution and phenology responses to climate change, Global change biology, vol.22, issue.4, pp.1548-60, 2016.

M. C. Brundrett, D. E. Enstone, and C. A. Peterson, A berberine-aniline blue fluorescent staining procedure for suberin, lignin, and callose in plant tissue, Protoplasma, vol.146, issue.2-3, pp.133-175, 1988.

C. S. Buer, J. Masle, and G. O. Wasteneys, Growth conditions modulate root-wave phenotypes in Arabidopsis. Plant and Cell Physiology, vol.41, pp.1164-70, 2000.

A. Buhtz, J. Pieritz, F. Springer, and J. Kehr, Phloem small RNAs, nutrient stress responses, and systemic mobility, BMC Plant Biology, vol.10, p.64, 2010.

I. Cakmak, C. Hengeler, and H. Marschner, Partitioning of shoot and root dry matter and carbohydrates in bean plants suffering from phosphorus, potassium and magnesium deficiency, Journal of Experimental Botany, vol.45, issue.9, pp.1245-50, 1994.

S. B. Cannon, A. Mitra, A. Baumgarten, N. D. Young, and G. May, The roles of segmental and tandem gene duplication in the evolution of large gene families in Arabidopsis thaliana, BMC plant biology, vol.4, issue.1, p.10, 2004.

Z. Cao and Z. Deng, De Novo Assembly, Annotation, and Characterization of Root Transcriptomes of Three Caladium Cultivars with a Focus on Necrotrophic Pathogen Resistance/Defense-Related Genes. International journal of molecular sciences, vol.18, p.712, 2017.

A. Carbonneau, The early selection of grapevine rootstocks for resistance to drought conditions, American Journal of Enology and Viticulture, vol.36, issue.3, pp.195-203, 1985.

A. Carminati and D. Vetterlein, Plasticity of rhizosphere hydraulic properties as a key for efficient utilization of scarce resources, Annals of botany, vol.112, issue.2, pp.277-90, 2012.

M. Carvajal, D. T. Cooke, and D. T. Clarkson, Responses of wheat plants to nutrient deprivation may involve the regulation of water-channel function, Planta, vol.199, issue.3, pp.372-81, 1996.

S. A. Casson and K. Lindsey, Genes and signalling in root development, New Phytologist, vol.158, issue.1, pp.11-38, 2003.

L. A. Cernusak, K. Winter, and B. L. Turner, Transpiration modulates phosphorus acquisition in tropical tree seedlings, Tree Physiology, vol.31, issue.8, pp.878-85, 2011.

F. Chaumont, F. Barrieu, E. Wojcik, M. J. Chrispeels, and R. Jung, Aquaporins constitute a large and highly divergent protein family in maize. Plant physiology, vol.25, pp.1206-1221, 2001.

F. Chaumont, M. Moshelion, and M. J. Daniels, Regulation of plant aquaporin activity, Biology of the Cell, vol.97, issue.10, pp.749-64, 2005.

F. Chaumont and S. D. Tyerman, Aquaporins: highly regulated channels controlling plant water relations. Plant physiology, vol.164, pp.1600-1618, 2014.

M. M. Chaves, J. S. Pereira, J. Maroco, M. L. Rodrigues, C. P. Ricardo et al., How plants cope with water stress in the field? Photosynthesis and growth, Annals of botany, vol.89, issue.7, pp.907-923, 2002.

M. M. Chaves, O. Zarrouk, R. Francisco, J. M. Costa, T. Santos et al., Grapevine under deficit irrigation: hints from physiological and molecular data, Annals of botany, issue.5, pp.661-76, 2010.

C. Y. Cheng, V. Krishnakumar, A. P. Chan, F. Thibaud-nissen, S. Schobel et al., Araport11: a complete reannotation of the Arabidopsis thaliana reference genome, The Plant Journal, vol.89, issue.4, pp.789-804, 2017.

A. Christmann, E. W. Weiler, E. Steudle, and E. Grill, A hydraulic signal in root-to-shoot signalling of water shortage, The Plant Journal, vol.52, issue.1, pp.167-74, 2007.

L. J. Clark, W. R. Whalley, and P. B. Barraclough, How do roots penetrate strong soil? In Roots: The Dynamic Interface Between Plants and the Earth, pp.93-104, 2003.

S. J. Clarke, K. J. Lamont, H. Y. Pan, L. A. Barry, A. Hall et al., Spring root-zone temperature regulates root growth, nutrient uptake and shoot growth dynamics in grapevines. Australian journal of grape and wine research, vol.21, pp.479-89, 2015.

D. T. Clarkson, M. Carvajal, T. Henzler, R. N. Waterhouse, A. J. Smyth et al., Root hydraulic conductance: diurnal aquaporin expression and the effects of nutrient stress, Journal of Experimental Botany, vol.51, issue.342, pp.61-70, 2000.

M. J. Clearwater, R. G. Lowe, B. J. Hofstee, C. Barclay, A. J. Mandemaker et al., Hydraulic conductance and rootstock effects in grafted vines of kiwifruit, Journal of Experimental Botany, vol.55, issue.401, pp.1371-82, 2004.

N. Collis-george and P. Yoganathan, The effect of soil strength on germination and emergence of wheat (Triticum aestivum L.). I. Low shear strength conditions. Soil Research, vol.23, pp.577-87, 1985.

J. Comstock, Hydraulic and chemical signalling in the control of stomatal conductance and transpiration, Journal of Experimental Botany, vol.53, pp.195-200, 2002.

S. J. Cookson, C. Moreno, M. J. Hevin, C. , N. Mendome et al., Heterografting with nonself rootstocks induces genes involved in stress responses at the graft interface when compared with autografted controls, Journal of experimental botany, vol.65, issue.9, pp.2473-81, 2014.

S. J. Cookson, C. Moreno, M. J. Hevin, C. , N. Mendome et al., Graft union formation in grapevine induces transcriptional changes related to cell wall modification, wounding, hormone signalling, and secondary metabolism, Journal of experimental botany, vol.64, issue.10, pp.2997-3008, 2013.

S. J. Cookson, C. Hevin, M. Donnart, and N. Ollat, Grapevine rootstock effects on scion biomass are not associated with large modifications of primary shoot growth under nonlimiting conditions in the first year of growth, Functional Plant Biology, vol.39, issue.8, pp.650-60, 2012.

G. R. Cramer, A. Lä-uchli, and E. Epstein, Effects of NaCl and CaCl2 on ion activities in complex nutrient solutions and root growth of cotton, Plant Physiology, vol.81, issue.3, pp.792-799, 1986.

T. Czechowski, R. P. Bari, M. Stitt, W. R. Scheible, and M. K. Udvardi, Real-time RT-PCR profiling of over 1400

, Arabidopsis transcription factors: unprecedented sensitivity reveals novel root-and shoot-specific genes, The Plant Journal, vol.38, issue.2, pp.366-79, 2004.

A. Dai, Wiley Interdisciplinary Reviews: Climate Change, vol.2, pp.45-65, 2011.

A. Dai, Increasing drought under global warming in observations and models, Nature Climate Change, vol.2013, issue.1, pp.52-60

M. A. Dalbó, E. Schuck, and C. Basso, Influence of rootstock on nutrient content in grape petioles, Revista Brasileira de Fruticultura, vol.33, issue.3, pp.941-948, 2011.

M. J. Daniels and M. Yeager, Phosphorylation of aquaporin PvTIP3; 1 defined by mass spectrometry and molecular modeling, Biochemistry, vol.44, issue.44, pp.14443-54, 2005.

W. J. Davies, G. Kudoyarova, and W. Hartung, Long-distance ABA signaling and its relation to other signaling pathways in the detection of soil drying and the mediation of the plant's response to drought, Journal of plant growth regulation, vol.24, issue.4, p.285, 2005.

W. J. Davies and J. Zhang, Root signals and the regulation of growth and development of plants in drying soil. Annual review of plant biology, vol.42, pp.55-76, 1991.

A. R. Davis, P. Perkins-veazie, R. Hassell, A. Levi, S. R. King et al., Grafting effects on vegetable quality, HortScience, vol.43, issue.6, pp.1670-1672, 2008.

D. Day, Vitamin B6 and growth of excised tomato roots in agar culture, Science, vol.94, pp.468-477, 1941.

B. M. Denker, B. L. Smith, F. P. Kuhajda, and P. Agre, Identification, purification, and partial characterization of a novel Mr 28,000 integral membrane protein from erythrocytes and renal tubules, Journal of Biological Chemistry, vol.263, issue.30, pp.15634-15676, 1988.

F. De-herralde, R. Savé, X. Aranda, and C. Biel, Grapevine roots and soil environment: growth, distribution and function, Methodologies and results in grapevine research 2010, pp.1-20

D. Smet, I. Zhang, H. Inze, D. Beeckman, and T. , A novel role for abscisic acid emerges from underground. Trends in plant science, vol.11, pp.434-443, 2006.

M. Del-carmen-rodrí-guez-herná-ndez, D. A. Moreno, M. Carvajal, and M. D. Ballesta, Interactive effects of boron and NaCl stress on water and nutrient transport in two broccoli cultivars, Functional Plant Biology, vol.40, issue.7, pp.739-787, 2013.

B. Dell and L. Huang, Physiological response of plants to low boron. Plant and soil, vol.193, pp.103-123, 1997.

S. Delrot, S. Picaud, and J. P. Gaudillere, Water transport and aquaporins in grapevine, Molecular Biology & Biotechnology of the Grapevine, pp.241-262, 2001.

L. G. Deluc, D. R. Quilici, A. Decendit, J. Grimplet, M. D. Wheatley et al., Water deficit alters differentially metabolic pathways affecting important flavor and quality traits in grape berries of Cabernet Sauvignon and Chardonnay, BMC Genomics, vol.10, p.212, 2009.

I. C. Dodd, Abscisic acid and stomatal closure: a hydraulic conductance conundrum?, New Phytologist, vol.197, issue.1, pp.6-8, 2013.

P. Doerner, J. E. Jørgensen, R. You, J. Steppuhn, and C. Lamb, Control of root growth and development by cyclin expression, Nature, vol.380, issue.6574, pp.520-523, 1996.

N. K. Dokoozlian and W. M. Kliewer, The light environment within grapevine canopies. I. Description and seasonal changes during fruit development, American Journal of Enology and Viticulture, vol.46, issue.2, pp.209-227, 1995.

N. K. Dokoozlian and W. M. Kliewer, The light environment within grapevine canopies. II. Influence of leaf area density on fruit zone light environment and some canopy assessment parameters, American Journal of Enology and Viticulture, vol.46, issue.2, pp.219-245, 1995.

H. Dong, Y. Niu, W. Li, and D. Zhang, Effects of cotton rootstock on endogenous cytokinins and abscisic acid in xylem sap and leaves in relation to leaf senescence, Journal of Experimental Botany, vol.59, issue.6, pp.1295-304, 2008.

M. Drew, Function of root tissues in nutrient and water transport, Root Development and Function, pp.71-101, 1987.

P. R. Dry, B. R. Loveys, and H. Düring, Partial drying of the rootzone of grape. I. Transient changes in shoot growth and gas exchange, Vitis, vol.39, issue.1, pp.3-7, 2000.

P. R. Dry, B. R. Loveys, and H. Düring, Partial drying of the rootzone of grape. II. Changes in the pattern of root development, Vitis, vol.39, issue.1, pp.9-12, 2000.

A. R. Durbak, K. A. Phillips, S. Pike, M. A. O'neill, J. Mares et al., Transport of boron by the tassel-less1 aquaporin is critical for vegetative and reproductive development in maize. The Plant Cell, vol.26, pp.2978-95, 2014.

H. Düring, Stomatal adaptation of grapevine leaves to water stress, Proceedings 5th Int. Symp. Grapevine Breeding, pp.366-370, 1990.

H. Düring, Photosynthesis of ungrafted and grafted grapevines: effects of rootstock genotype and plant age, vol.45, pp.297-306, 1994.

W. Ehlers, A. P. Hamblin, D. Tennant, and R. R. Van-der-ploeg, Root system parameters determining water uptake of field crops. Irrigation Science, vol.12, pp.115-139, 1991.

L. Eliasson, Effects of nutrients and light on growth and root formation in Pisum sativum cuttings, Physiologia Plantarum, vol.43, issue.1, pp.13-21, 1978.

L. Eliasson and M. Bollmark, Ethylene as a possible mediator of light-induced inhibition of root growth, Physiologia Plantarum, vol.72, issue.3, pp.605-614, 1988.

M. A. Else, W. J. Davies, M. Malone, and M. B. Jackson, A negative hydraulic message from oxygen-deficient roots of tomato plants? (influence of soil flooding on leaf water potential, leaf expansion, and synchrony between stomatal conductance and root hydraulic conductivity), Plant Physiology, vol.109, issue.3, pp.1017-1041, 1995.

S. El-showk, R. Ruonala, and Y. Helariutta, Crossing paths: cytokinin signalling and crosstalk, Development, vol.140, issue.7, pp.1373-83, 2013.

G. Erlandsson, S. Pettersson, and S. B. Svensson, Rapid effects of abscisic acid on ion uptake in sunflower roots, Physiologia plantarum, vol.43, issue.4, pp.380-384, 1978.

P. Errea, A. Felipe, and M. Herrero, Graft establishment between compatible and incompatible Prunus spp, Journal of Experimental Botany, vol.45, issue.3, pp.393-401, 1994.

A. Eshel, T. Beeckman, A. Ezzahouani, and L. E. Williams, The influence of rootstock on leaf water potential, yield, and berry composition of Ruby Seedless grapevines, American Journal of Enology and Viticulture, vol.46, issue.4, pp.559-63, 1995.

M. Faget, S. Blossfeld, S. Jahnke, G. Huber, U. Schurr et al., Temperature Effects on Root Growth. Plant Roots: The Hidden Half, 2013.

K. Fetter, V. Van-wilder, M. Moshelion, and F. Chaumont, Interactions between plasma membrane aquaporins modulate their water channel activity. The Plant Cell, vol.16, pp.215-243, 2004.

F. Fiorani and U. Schurr, Future scenarios for plant phenotyping. Annual review of plant biology, vol.64, pp.267-91, 2013.

M. Fregoni, A. Scienza, and R. Miravealle, INRA (ed) Gé né tique et Amé lioration de la Vigne, IIe Symposium International sur l'Amélioration de la Vigne, pp.287-295, 1977.

M. Fregoni, A. Scienza, and R. Miravalle, Evaluation pré coce de la ré sistance des porte-greffes à la secheresse, Proceedings of the IId Symposium of Genetics and Grape Breeding, vol.2, pp.287-96, 1978.

A. French, S. Ubeda-tomá-s, T. J. Holman, M. J. Bennett, and T. Pridmore, High-throughput quantification of root growth using a novel image-analysis tool. Plant physiology, vol.150, pp.1784-95, 2009.

A. French, D. Wells, N. Everitt, and T. Pridmore, High-throughput quantification of root growth, Measuring Roots, pp.109-126, 2012.

A. Frick, M. Jä-rvå, and S. Törnroth-horsefield, Structural basis for pH gating of plant aquaporins. FEBS letters, vol.587, pp.989-93, 2013.

S. C. Fry, R. C. Smith, K. F. Renwick, D. J. Martin, S. K. Hodge et al., Xyloglucan endotransglycosylase, a new wall-loosening enzyme activity from plants, Biochemical Journal, vol.282, issue.3, pp.821-829, 1992.

I. Fuentes, S. Stegemann, H. Golczyk, D. Karcher, and R. Bock, Horizontal genome transfer as an asexual path to the formation of new species, Nature, vol.511, pp.232-235, 2014.

K. L. Gallagher, Cellular Patterning of the Root Meristem: Genes and Signals. Plant Roots: The Hidden Half, 2013.

M. Gallardo, J. Eastham, P. J. Gregory, and N. C. Turner, A comparison of plant hydraulic conductances in wheat and lupins, Journal of Experimental Botany, vol.47, issue.2, pp.233-242, 1996.

J. Galmé-s, A. Pou, M. M. Alsina, M. Tomas, H. Medrano et al., Aquaporin expression in response to different water stress intensities and recovery in Richter-110 (Vitis sp.): relationship with ecophysiological status, Planta, vol.226, issue.3, pp.671-81, 2007.

G. A. Gambetta, J. Fei, T. L. Rost, T. Knipfer, M. A. Matthews et al., Water uptake along the length of grapevine fine roots: developmental anatomy, tissue-specific aquaporin expression, and pathways of water transport, Plant Physiology, vol.163, issue.3, pp.1254-65, 2013.

G. A. Gambetta, C. M. Manuck, S. T. Drucker, T. Shaghasi, K. Fort et al., The relationship between root hydraulics and scion vigour across Vitis rootstocks: what role do root aquaporins play, Journal of experimental botany, vol.63, issue.18, pp.6445-55, 2012.

Y. Gao, Y. Li, X. Yang, H. Li, Q. Shen et al., Ammonium nutrition increases water absorption in rice seedlings (Oryza sativa L.) under water stress, Plant and Soil, vol.331, issue.1-2, pp.193-201, 2010.

M. Gaspar, A. Bousser, I. Sissoë-ff, O. Roche, J. Hoarau et al., Cloning and characterization of ZmPIP1-5b, an aquaporin transporting water and urea, Plant Science, vol.165, issue.1, pp.21-31, 2003.

P. Gerbeau, G. Amodeo, T. Henzler, V. Santoni, P. Ripoche et al., The water permeability of Arabidopsis plasma membrane is regulated by divalent cations and pH, The Plant Journal, vol.30, issue.1, pp.71-81, 2002.

P. Gerbeau, J. Güç-lü, P. Ripoche, and C. Maurel, Aquaporin Nt-TIPa can account for the high permeability of tobacco cell vacuolar membrane to small neutral solutes, The Plant Journal, vol.18, issue.6, pp.577-87, 1999.

Z. Glinka and L. Reinhold, Abscisic acid raises the permeability of plant cells to water. Plant physiology, vol.48, p.103, 1971.

J. D. Goeschl, L. Rappaport, and H. K. Pratt, Ethylene as a factor regulating the growth of pea epicotyls subjected to physical stress, Plant Physiology, vol.41, issue.5, pp.877-84, 1966.

H. E. Goldbach, Q. Yu, R. Wingender, M. Schulz, M. Wimmer et al., Rapid response reactions of roots to boron deprivation, Journal of Plant Nutrition and Soil Science, vol.164, issue.2, pp.173-81, 2001.

D. J. Gowing, W. J. Davies, and H. G. Jones, A positive root-sourced signal as an indicator of soil drying in apple, Malus x domestica Borkh, Journal of Experimental Botany, vol.41, issue.12, pp.1535-1575, 1990.

J. Granett, M. A. Walker, L. Kocsis, and A. D. Omer, Biology and management of grape phylloxera. Annual review of entomology, vol.46, pp.387-412, 2001.

R. S. Grant and M. A. Matthews, The influence of phosphorus availability, scion, and rootstock on grapevine shoot growth, leaf area, and petiole phosphorus concentration, American Journal of Enology and Viticulture, vol.47, issue.2, pp.217-241, 1996.

I. Grechi, P. H. Vivin, G. Hilbert, S. Milin, T. Robert et al., Effect of light and nitrogen supply on internal C: N balance and control of root-to-shoot biomass allocation in grapevine, Environmental and Experimental Botany, vol.59, issue.2, pp.139-188, 2007.

A. Grondin, R. Mauleon, V. Vadez, and A. Henry, Root aquaporins contribute to whole plant water fluxes under drought stress in rice, Oryza sativa L.). Plant, cell & environment, vol.39, issue.2, pp.347-65, 2016.

B. D. Gruber, R. F. Giehl, S. Friedel, and V. Wiré-n-n, Plasticity of the Arabidopsis root system under nutrient deficiencies, Plant Physiology, vol.163, issue.1, pp.161-79, 2013.

V. Gruber, S. Blanchet, A. Diet, O. Zahaf, A. Boualem et al., Identification of transcription factors involved in root apex responses to salt stress in Medicago truncatula. Molecular genetics and genomics, vol.281, pp.55-66, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00856238

J. F. Guenther, N. Chanmanivone, M. P. Galetovic, I. S. Wallace, J. A. Cobb et al., Phosphorylation of soybean nodulin 26 on serine 262 enhances water permeability and is regulated developmentally and by osmotic signals. The Plant Cell, vol.15, pp.981-91, 2003.

A. Gur, B. Bravdo, and Y. Mizrahi, Physiological responses of apple trees to supraoptimal root temperature, Physiologia Plantarum, vol.27, issue.2, pp.130-138, 1972.

H. Hanaoka, S. Uraguchi, J. Takano, M. Tanaka, and T. Fujiwara, OsNIP3; 1, a rice boric acid channel, regulates boron distribution and is essential for growth under boron-deficient conditions, The Plant Journal, vol.78, issue.5, pp.890-902, 2014.

P. J. Hanson, E. I. Sucoff, and A. H. Markhart, Quantifying apoplastic flux through red pine root systems using trisodium, 3-hydroxy-5, 8, 10-pyrenetrisulfonate, Plant Physiology, vol.77, issue.1, pp.21-25, 1985.

J. F. Harbertson and M. Keller, Rootstock effects on deficit-irrigated winegrapes in a dry climate: grape and wine composition, American journal of enology and viticulture, vol.63, issue.1, pp.40-48, 2012.

N. M. Hardie and R. M. Cirami, Grapevine rootstocks, Viticulture, resources, pp.154-176, 1990.

R. B. Heinen, Q. Ye, and F. Chaumont, Role of aquaporins in leaf physiology, Journal of Experimental Botany, vol.60, issue.11, pp.2971-85, 2009.

R. L. Hendrick and K. S. Pregitzer, The demography of fine roots in a northern hardwood forest, Ecology, vol.73, pp.1094-104, 1992.

T. Henzler, R. N. Waterhouse, A. J. Smyth, M. Carvajal, D. T. Cooke et al., Diurnal variations in hydraulic conductivity and root pressure can be correlated with the expression of putative aquaporins in the roots of Lotus japonicus, Planta, vol.210, issue.1, pp.50-60, 1999.

C. Hermans, J. P. Hammond, P. J. White, and N. Verbruggen, How do plants respond to nutrient shortage by biomass allocation? Trends in plant science, vol.11, pp.610-617, 2006.

A. E. Hill, B. Shachar-hill, and Y. Shachar-hill, What are aquaporins for? The Journal of membrane biology, vol.197, pp.1-32, 2004.

F. Hochholdinger and . Zimmermann, Molecular and genetic dissection of cereal root system development, pp.175-191, 2009.

A. Hodge, G. Berta, C. Doussan, F. Merchan, and M. Crespi, Plant root growth, architecture and function. Plant and soil, vol.321, pp.153-87, 2009.

T. Holland and B. Smit, Climate change and the wine industry: current research themes and new directions, Journal of Wine Research, vol.21, issue.2-3, pp.125-161, 2010.

J. C. Hong, Plant Transcription Factors: Evolutionary, Structural and Functional Aspects, vol.7, p.35, 2015.

G. Hoogenboom, M. G. Huck, and C. M. Peterson, Root growth rate of soybean as affected by drought stress, Agronomy Journal, vol.79, issue.4, pp.607-621, 1987.

E. Hose, E. Steudle, and W. Hartung, Abscisic acid and hydraulic conductivity of maize roots: a study using cell-and root-pressure probes, Planta, vol.211, issue.6, pp.874-82, 2000.

F. Hosseini, Effect of the fungus Piriformospora indica on physiological characteristics and root morphology of wheat under combined drought and mechanical stresses, Plant Physiology and Biochemistry, vol.118, pp.107-120, 2017.

E. Hosy, A. Martiniè-re, D. Choquet, C. Maurel, and D. T. Luu, Super-resolved and dynamic imaging of membrane proteins in plant cells reveal contrasting kinetic profiles and multiple confinement mechanisms, Molecular Plant, vol.8, pp.339-381, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01140467

T. C. Hsiao and L. K. Xu, Sensitivity of growth of roots versus leaves to water stress: biophysical analysis and relation to water transport, Journal of Experimental Botany, vol.51, issue.350, pp.1595-1616, 2000.

M. G. Huck and H. M. Taylor, The rhizotron as a tool for root research. Advances in agronomy, vol.35, pp.1-35, 1982.

F. R. Iacono, A. Buccella, and E. Peterlunger, Water stress and rootstock influence on leaf gas exchange of grafted and ungrafted grapevines, Scientia Horticulturae, vol.75, issue.1, pp.27-39, 1998.

S. V. Isayenkov and F. J. Maathuis, The Arabidopsis thaliana aquaglyceroporin AtNIP7; 1 is a pathway for arsenite uptake, Febs Letters, vol.582, issue.11, pp.1625-1633, 2008.

F. Ishikawa, S. Suga, T. Uemura, M. H. Sato, and M. Maeshima, Novel type aquaporin SIPs are mainly localized to the ER membrane and show cell-specific expression in Arabidopsis thaliana, FEBS letters, vol.579, issue.25, pp.5814-5834, 2005.

J. E. Jackson, Biology of apples and pears, 2003.

R. S. Jackson, T. P. Amsterdam-jahn, A. L. Møller, T. Zeuthen, L. M. Holm et al., Aquaporin homologues in plants and mammals transport ammonia, FEBS letters, vol.574, issue.1-3, pp.31-37, 2004.

O. Jaillon, J. M. Aury, B. Noel, A. Policriti, C. Clepet et al., The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla, Nature, vol.449, issue.7161, pp.463-470, 2007.
URL : https://hal.archives-ouvertes.fr/inria-00180136

J. Y. Jang, D. G. Kim, Y. O. Kim, J. S. Kim, and H. Kang, An expression analysis of a gene family encoding plasma membrane aquaporins in response to abiotic stresses in Arabidopsis thaliana, Plant molecular biology, vol.54, issue.5, pp.713-738, 2004.

H. Javot, V. Lauvergeat, V. Santoni, F. Martin-laurent, J. Güç-lü et al., Role of a single aquaporin isoform in root water uptake. The plant cell, vol.15, pp.509-531, 2003.
URL : https://hal.archives-ouvertes.fr/hal-01637032

C. E. Jeffree and M. M. Yeoman, Development of intercellular connections between opposing cells in a graft union, New Phytologist, vol.93, issue.4, pp.491-509, 1983.

W. Jia and J. Zhang, Stomatal movements and long-distance signaling in plants, Plant signaling & behavior, vol.3, issue.10, pp.772-779, 2008.

J. Jin, H. Zhang, L. Kong, G. Gao, and J. Luo, PlantTFDB 3.0: a portal for the functional and evolutionary study of plant transcription factors, Nucleic acids research, vol.42, issue.D1, pp.1182-1189, 2013.

U. Johanson, M. Karlsson, I. Johansson, S. Gustavsson, S. Sjövall et al., The complete set of genes encoding major intrinsic proteins in Arabidopsis provides a framework for a new nomenclature for major intrinsic proteins in plants. Plant physiology, vol.126, pp.1358-69, 2001.

I. Johansson, M. Karlsson, V. K. Shukla, M. J. Chrispeels, C. Larsson et al., Water transport activity of the plasma membrane aquaporin PM28A is regulated by phosphorylation. The Plant Cell, vol.10, pp.451-460, 1998.

I. Johansson, C. Larsson, B. Ek, and P. Kjellbom, The major integral proteins of spinach leaf plasma membranes are putative aquaporins and are phosphorylated in response to Ca 2+ and apoplastic water potential. The Plant Cell, vol.8, pp.1181-91, 1996.

K. D. Johnson and M. J. Chrispeels, Tonoplast-bound protein kinase phosphorylates tonoplast intrinsic protein, Plant Physiology, vol.100, issue.4, pp.1787-95, 1992.

I. R. Johnson and J. H. Thornley, Temperature dependence of plant and crop process, Annals of Botany, vol.55, issue.1, pp.1-24, 1985.

G. V. Jones and L. B. Webb, Climate change, viticulture, and wine: challenges and opportunities, Journal of Wine Research, vol.21, issue.2-3, pp.103-109, 2010.

G. V. Jones, M. A. White, O. R. Cooper, and K. Storchmann, Climate change and global wine quality. Climatic change, vol.73, pp.319-362, 2005.

J. B. Jones, Hydroponics: its history and use in plant nutrition studies, Journal of plant Nutrition, vol.1982, issue.8, pp.1003-1033

T. H. Jones, B. R. Cullis, P. R. Clingeleffer, and E. H. Rühl, Effects of novel hybrid and traditional rootstocks on vigour and yield components of Shiraz grapevines, Australian Journal of Grape and Wine Research, vol.15, issue.3, pp.284-92, 2009.

L. A. Judd, B. E. Jackson, and W. C. Fonteno, Advancements in root growth measurement technologies and observation capabilities for container-grown plants, Plants, issue.3, pp.369-92, 2004.

T. E. Juenger, J. K. Mckay, N. Hausmann, J. J. Keurentjes, S. Sen et al., Identification and characterization of QTL underlying whole-plant physiology in Arabidopsis thaliana: ?13C, stomatal conductance and transpiration efficiency, Plant, Cell & Environment, vol.28, issue.6, pp.697-708, 2005.

R. Kaldenhoff, A. Kölling, and G. Richter, Regulation of the Arabidopsis thaliana aquaporin gene AthH2 (PIP1b), Journal of Photochemistry and Photobiology B: Biology, vol.36, issue.3, pp.351-355, 1996.

R. Kaldenhoff, R. Mi, J. F. Sans, C. Lovisolo, M. Heckwolf et al., Aquaporins and plant water balance, Plant, Cell & Environment, vol.31, issue.5, pp.658-66, 2008.

M. L. Kaps and G. A. Cahoon, Growth and fruiting of container-grown Seyval blanc grapevines modified by changes in crop level, leaf number and position, and light exposure, American journal of enology and viticulture, vol.43, issue.2, pp.191-200, 1992.

T. C. Kaspar, Evaluation of the taproot elongation rates of soybean cultivars. 1982, PhD thesis Kaspar TC, Ewing RP. ROOTEDGE: Software for measuring root length from desktop scanner images, Agronomy Journal, vol.89, issue.6, pp.932-972, 1997.

M. Keller, The science of grapevines: anatomy and physiology, 2015.

M. Keller, K. J. Arnink, and G. Hrazdina, Interaction of nitrogen availability during bloom and light intensity during veraison. I. Effects on grapevine growth, fruit development, and ripening, American Journal of Enology and Viticulture, vol.49, issue.3, pp.333-373, 1998.

M. Keller and G. Hrazdina, Interaction of nitrogen availability during bloom and light intensity during veraison

, Effects on anthocyanin and phenolic development during grape ripening, American Journal of Enology and Viticulture, vol.49, issue.3, pp.341-350, 1998.

M. Keller, L. J. Mills, and J. F. Harbertson, Rootstock effects on deficit-irrigated winegrapes in a dry climate: vigor, yield formation, and fruit ripening, American Journal of Enology and Viticulture, vol.63, pp.29-39, 2012.

G. J. Kenny and P. A. Harrison, The effects of climate variability and change on grape suitability in Europe, Journal of Wine Research, vol.3, issue.3, pp.163-83, 1992.

P. Kenrick, The origin of roots. Plant roots: the hidden half, vol.29, pp.1-3, 2002.

C. M. Kidman, P. R. Dry, M. G. Mccarthy, and C. Collins, Reproductive performance of Cabernet Sauvignon and Merlot (Vitis vinifera L.) is affected when grafted to rootstocks, Australian Journal of Grape and Wine Research, vol.19, issue.3, pp.409-430, 2013.

H. H. Kirch, R. Vera-estrella, D. Golldack, F. Quigley, C. B. Michalowski et al., Expression of water channel proteins in Mesembryanthemum crystallinum, Plant Physiology, vol.123, issue.1, pp.111-135, 2000.

T. Knipfer and W. Fricke, Water uptake by seminal and adventitious roots in relation to whole-plant water flow in barley (Hordeum vulgare L.), Journal of Experimental Botany, vol.62, issue.2, pp.717-750, 2011.

L. Kocsis, E. Tarczal, and . Ká, Effect of rootstocks on the productivity and fruit composition of Vitis vinifera L. 'Cabernet Sauvignon' and 'Kékfrankos' Acta Horticulturae, vol.931, pp.403-411, 2012.

S. Kodur, J. M. Tisdall, C. Tang, and R. R. Walker, Accumulation of potassium in grapevine rootstocks (Vitis) grafted to 'Shiraz' as affected by growth, root-traits and transpiration, Vitis-Journal of Grapevine Research, vol.49, p.7, 2015.

A. Kohler, C. Delaruelle, D. Martin, N. Encelot, and F. Martin, The poplar root transcriptome: analysis of 7000 expressed sequence tags. FEBS letters, vol.542, pp.37-41, 2003.

H. Kouchi and K. Kumazawa, Effect of boron deficiency on the cellular growth and development in root tips. Soil science and plant nutrition, vol.21, pp.137-50, 1975.

S. Koundouras, E. Hatzidimitriou, M. Karamolegkou, E. Dimopoulou, S. Kallithraka et al., Irrigation and rootstock effects on the phenolic concentration and aroma potential of Vitis vinifera L. cv. Cabernet Sauvignon grapes, Journal of Agricultural and Food Chemistry, vol.57, issue.17, pp.7805-7818, 2009.

S. Koundouras, I. T. Tsialtas, E. Zioziou, and N. Nikolaou, Rootstock effects on the adaptive strategies of grapevine (Vitis vinifera L. cv. Cabernet-Sauvignon) under contrasting water status: leaf physiological and structural responses, Ecosystems & Environment, vol.128, issue.1, pp.86-96, 2008.

H. Koyama, T. Toda, H. Kojima, and T. Hara, Direct observation of root-elongation of Arabidopsis thaliana seedlings grown in hydroponic culture. Soil science and plant nutrition, vol.41, pp.173-179, 1995.

P. J. Kramer and J. S. Boyer, Water relations of plants and soils, vol.28, pp.115-166, 1995.

P. J. Kramer, Water relations of plants, 1983.

G. Kudoyarova, S. Veselova, W. Hartung, R. Farhutdinov, D. Veselov et al., Involvement of root ABA and hydraulic conductivity in the control of water relations in wheat plants exposed to increased evaporative demand, Planta, vol.233, issue.1, pp.87-94, 2011.

A. Kutz, A. Muller, P. Henning, W. M. Kaiser, M. Piotrowsky et al., A role for nitrilase 3 in the regulation of root morphology in sulphur-starving Arabidopsis thaliana, Plant Journal, vol.30, pp.95-106, 2002.

H. Lambers and F. Posthumus, The effect of light intensity and relative humidity on growth rate and root respiration of Plantago lanceolata and Zea mays, Journal of Experimental Botany, vol.31, issue.6, pp.1621-1651, 1980.

J. Le, F. Vandenbussche, D. Van-der-straeten, and J. P. Verbelen, In the early response of Arabidopsis roots to ethylene, cell elongation is up-and down-regulated and uncoupled from differentiation, Plant Physiology, vol.125, issue.2, pp.519-541, 2001.

J. Lecourt, V. Lauvergeat, N. Ollat, P. Vivin, and S. J. Cookson, Shoot and root ionome responses to nitrate supply in grafted grapevines are rootstock genotype dependent, Australian Journal of Grape and Wine Research, vol.21, issue.2, pp.311-319, 2015.

H. J. Lee, J. H. Ha, and C. M. Park, Underground roots monitor aboveground environment by sensing stem-piped light, Communicative & integrative biology, vol.9, issue.6, p.1261769, 2016.

H. J. Lee, Y. J. Park, J. H. Ha, I. T. Baldwin, and C. M. Park, Multiple Routes of Light Signaling during Root Photomorphogenesis, Trends in Plant Science, vol.22, issue.9, pp.803-815, 2017.

D. R. Lewis and G. K. Muday, Ethylene Regulates Root Growth and Development. Plant Roots: The Hidden Half, 2013.

A. X. Li, Y. Y. Han, X. Wang, Y. H. Chen, M. R. Zhao et al., Root-specific expression of wheat expansin gene TaEXPB23 enhances root growth and water stress tolerance in tobacco, Environmental and Experimental Botany, vol.110, pp.73-84, 2015.

D. M. Li, C. Y. Zhao, X. R. Liu, X. F. Liu, Y. J. Lin et al., De novo assembly and characterization of the root transcriptome and development of simple sequence repeat markers in Paphiopedilum concolor, Genetics and Molecular Research, vol.14, issue.2, pp.6189-201, 2015.

G. Li, V. Santoni, and C. Maurel, Plant aquaporins: roles in plant physiology, Biochimica et Biophysica Acta (BBA)-General Subjects, vol.1840, issue.5, pp.1574-82, 2014.
URL : https://hal.archives-ouvertes.fr/hal-00962141

R. Li, J. Wang, S. Li, L. Zhang, C. Qi et al., Plasma Membrane Intrinsic Proteins SlPIP2; 1, SlPIP2; 7 and SlPIP2; 5 Conferring Enhanced Drought Stress Tolerance in Tomato, Scientific reports, vol.6, p.31814, 2016.

X. Li, L. Chen, B. G. Forde, and W. J. Davies, The Biphasic Root Growth Response to Abscisic Acid in Arabidopsis Involves Interaction with Ethylene and Auxin Signalling Pathways. Frontiers in Plant Science, vol.8, p.1493, 2017.

H. L. Lian, X. Yu, D. Lane, W. N. Sun, Z. C. Tang et al., Upland rice and lowland rice exhibited different PIP expression under water deficit and ABA treatment, Cell research, vol.16, issue.7, pp.651-60, 2006.

H. L. Lian, X. Yu, Q. Ye, X. S. Ding, Y. Kitagawa et al., The role of aquaporin RWC3 in drought avoidance in rice, Plant and Cell Physiology, vol.45, issue.4, pp.481-490, 2004.

B. M. Liang, R. E. Sharp, and T. I. Baskin, Regulation of growth anisotropy in well-watered and water-stressed maize roots (I. Spatial distribution of longitudinal, radial, and tangential expansion rates), Plant Physiology, vol.115, issue.1, pp.101-112, 1997.

W. Lin, Y. Peng, G. Li, R. Arora, Z. Tang et al., Isolation and functional characterization of PgTIP1, a hormone-autotrophic cells-specific tonoplast aquaporin in ginseng, Journal of experimental botany, vol.58, issue.5, pp.947-56, 2007.

H. W. Linderholm, Growing season changes in the last century. Agricultural and Forest Meteorology, vol.137, pp.1-4, 2006.

K. J. Livak and T. D. Schmittgen, Analysis of relative gene expression data using real-time quantitative PCR and the 2? ??CT method, Methods, vol.25, issue.4, pp.402-410, 2001.

J. López-bucio, H. Ndez-abreu, E. Sá-nchez-calderón, L. Nieto-jacobo, M. F. Simpson et al., Phosphate availability alters architecture and causes changes in hormone sensitivity in the Arabidopsis root system, Plant Physiology, vol.129, pp.244-256, 2002.

D. Loqué, U. Ludewig, L. Yuan, and V. Wiré-n-n, Tonoplast intrinsic proteins AtTIP2; 1 and AtTIP2; 3 facilitate NH3 transport into the vacuole. Plant physiology, vol.137, pp.671-80, 2005.

G. C. Loresto, W. X. Zhang, D. Chaudhary, and T. T. Chang, Aeroponic technique for screening the drought avoidance mechanism of rice genotypes by root characters. Garcia de Orta, vol.10, pp.77-82, 1983.

C. Lovisolo, W. Hartung, and A. Schubert, Whole-plant hydraulic conductance and root-to-shoot flow of abscisic acid are independently affected by water stress in grapevines, Functional plant biology, vol.29, issue.11, pp.1349-56, 2002.

C. Lovisolo, I. Perrone, A. Carra, A. Ferrandino, J. Flexas et al., Drought-induced changes in development and function of grapevine (Vitis spp.) organs and in their hydraulic and nonhydraulic interactions at the wholeplant level: a physiological and molecular update, Functional plant biology, vol.37, pp.98-116, 2010.

C. Lovisolo and A. Schubert, Effects of water stress on vessel size and xylem hydraulic conductivity in Vitis vinifera L, Journal of Experimental Botany, vol.49, issue.321, pp.693-700, 1998.

C. Lovisolo, F. Secchi, A. Nardini, S. Salleo, R. Buffa et al., Expression of PIP1 and PIP2 aquaporins is enhanced in olive dwarf genotypes and is related to root and leaf hydraulic conductance, Physiologia Plantarum, vol.130, issue.4, pp.543-51, 2007.

C. Lovisolo, S. Tramontini, J. Flexas, and A. Schubert, Mercurial inhibition of root hydraulic conductance in Vitis spp. rootstocks under water stress, Environmental and Experimental Botany, vol.63, issue.1, pp.178-82, 2008.

D. Ludevid, H. Höfte, E. Himelblau, and M. J. Chrispeels, The expression pattern of the tonoplast intrinsic protein ?-TIP in Arabidopsis thaliana is correlated with cell enlargement, Plant Physiology, vol.100, issue.4, pp.1633-1642, 1992.

X. Luo, Z. Chen, J. Gao, and Z. Gong, Abscisic acid inhibits root growth in Arabidopsis through ethylene biosynthesis, The Plant Journal, vol.79, issue.1, pp.44-55, 2014.

D. T. Luu, A. Martiniere, M. Sorieul, J. Runions, and C. Maurel, Fluorescence recovery after photobleaching reveals high cycling dynamics of plasma membrane aquaporins in Arabidopsis roots under salt stress, The Plant Journal, vol.69, issue.5, pp.894-905, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00777022

J. F. Ma, K. Tamai, N. Yamaji, N. Mitani, S. Konishi et al., A silicon transporter in rice, Nature, vol.440, issue.7084, pp.688-91, 2006.

D. T. Macdougal, Lengthened growth periods and continuous growth, Proceedings of the American Philosophical Society, vol.69, issue.1, pp.329-374, 1930.

A. Maggio and R. J. Joly, Effects of mercuric-chloride on the hydraulic conductivity of tomato root systemsevidence for a channel-mediated water pathway, Plant Physiology, vol.109, pp.331-335, 1995.

M. Mahdieh, A. Mostajeran, T. Horie, and M. Katsuhara, Drought stress alters water relations and expression of PIP-type aquaporin genes in Nicotiana tabacum plants. Plant and Cell Physiology, vol.49, pp.801-814, 2008.

M. Mahdieh and A. Mostajeran, Abscisic acid regulates root hydraulic conductance via aquaporin expression modulation in Nicotiana tabacum, Journal of plant physiology, vol.166, issue.18, pp.1993-2003, 2009.

J. E. Malamy, Intrinsic and environmental response pathways that regulate root system architecture, Plant, cell & environment, vol.28, issue.1, pp.67-77, 2005.

E. Marguerit, O. Brendel, E. Lebon, C. Van-leeuwen, and N. Ollat, Rootstock control of scion transpiration and its acclimation to water deficit are controlled by different genes, New Phytologist, vol.2012, issue.2, pp.416-445
URL : https://hal.archives-ouvertes.fr/hal-01267814

A. H. Markhart, E. L. Fiscus, A. W. Naylor, and P. J. Kramer, Effect of abscisic acid on root hydraulic conductivity, Plant Physiology, vol.64, issue.4, pp.611-615, 1979.

C. P. Martins, D. M. Neves, L. C. Cidade, A. F. Mendes, D. C. Silva et al., Expression of the citrus CsTIP2; 1 gene improves tobacco plant growth, antioxidant capacity and physiological adaptation under stress conditions, Planta, vol.2017, issue.5, pp.951-63

P. Martre, R. Morillon, F. Barrieu, G. B. North, P. S. Nobel et al., Plasma membrane aquaporins play a significant role during recovery from water deficit, Plant Physiology, vol.130, issue.4, pp.2101-2111, 2002.

P. Martre, G. B. North, and P. S. Nobel, Hydraulic conductance and mercury-sensitive water transport for roots of Opuntia acanthocarpa in relation to soil drying and rewetting, Plant Physiology, vol.126, issue.1, pp.352-62, 2001.

C. Maurel, Y. Boursiac, D. T. Luu, V. Santoni, Z. Shahzad et al., Aquaporins in plants, Physiological reviews, vol.95, issue.4, pp.1321-58, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01282576

C. Maurel, R. T. Kado, J. Guern, and M. J. Chrispeels, Phosphorylation regulates the water channel activity of the seed-specific aquaporin alpha-TIP, The EMBO Journal, vol.14, issue.13, p.3028, 1995.

C. Maurel, J. Reizer, J. I. Schroeder, and M. J. Chrispeels, The vacuolar membrane protein gamma-TIP creates water specific channels in Xenopus oocytes, The EMBO Journal, vol.12, issue.6, p.2241, 1993.

C. Maurel, T. Simonneau, and M. Sutka, The significance of roots as hydraulic rheostats, Journal of Experimental Botany, issue.12, pp.3191-3199, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00508385

C. Maurel, L. Verdoucq, D. T. Luu, and V. Santoni, Plant aquaporins: membrane channels with multiple integrated functions, Annual Review of Plant Biology, vol.59, pp.595-624, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00356478

S. A. Mcadam and T. J. Brodribb, The evolution of mechanisms driving the stomatal response to vapor pressure deficit, Plant Physiology, vol.167, issue.3, pp.833-876, 2015.

A. J. Mcelrone, J. Bichler, W. T. Pockman, R. N. Addington, C. R. Linder et al., Aquaporin-mediated changes in hydraulic conductivity of deep tree roots accessed via caves, Plant, Cell & Environment, vol.30, issue.11, pp.1411-1432, 2007.

B. E. Mckenzie and C. A. Peterson, Root browning in Pinus banksiana Lamb. and Eucalyptus pilularis Sm. 1. Anatomy and permeability of the white and tannin zones, Plant Biology, vol.108, issue.2, pp.127-164, 1995.

H. Medrano, J. M. Escalona, J. Cifre, J. Bota, and J. Flexas, A ten-year study on the physiology of two Spanish grapevine cultivars under field conditions: effects of water availability from leaf photosynthesis to grape yield and quality, Functional Plant Biology, vol.30, issue.6, pp.607-626, 2003.

F. Meggio, B. Prinsi, A. S. Negri, S. D. Lorenzo, G. Lucchini et al., Biochemical and physiological responses of two grapevine rootstock genotypes to drought and salt treatments, Australia Journal of Grape and Wine Research, vol.20, pp.310-323, 2014.

W. Melchior and E. Steudle, Water transport in onion (Allium cepa L.) roots (changes of axial and radial hydraulic conductivities during root development), Plant Physiology, vol.101, issue.4, pp.1305-1320, 1993.

C. W. Melnyk and E. M. Meyerowitz, Plant grafting, Current Biology, vol.25, issue.5, pp.183-191, 2015.

C. W. Melnyk, C. Schuster, O. Leyser, and E. M. Meyerowitz, A developmental framework for graft formation and vascular reconnection in Arabidopsis thaliana, Current Biology, vol.25, issue.10, pp.1306-1324, 2015.

N. Mitani, N. Yamaji, and J. F. Ma, Characterization of substrate specificity of a rice silicon transporter, Lsi1. Pflügers Archiv-European Journal of Physiology, vol.456, pp.679-86, 2008.

Y. Mitsui, M. Shimomura, K. Komatsu, N. Namiki, M. Shibata-hatta et al., The radish genome and comprehensive gene expression profile of tuberous root formation and development, Scientific reports, p.5, 2015.

M. Mo, K. Yokawa, Y. Wan, and F. Balu?ka, How and why do root apices sense light under the soil surface? Frontiers in plant science, p.6, 2015.

A. Möglich, X. Yang, R. A. Ayers, and K. Moffat, Structure and function of plant photoreceptors. Annual review of plant biology, vol.4, p.61, 2010.

A. Mohamed, Y. Monnier, Z. Mao, G. Lobet, J. L. Maeght et al., An evaluation of inexpensive methods for root image acquisition when using rhizotrons, vol.13, p.11, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01608102

A. Moni, A. Y. Lee, W. R. Briggs, and I. S. Han, The blue light receptor Phototropin 1 suppresses lateral root growth by controlling cell elongation, Plant Biology, vol.17, issue.1, pp.34-40, 2015.

G. Montiel, P. Gantet, C. Jay-allemand, and C. Breton, Transcription factor networks. Pathways to the knowledge of root development, Plant Physiology, vol.136, issue.3, pp.3478-85, 2004.

G. J. Moon, B. F. Clough, C. A. Peterson, and W. G. Allaway, Apoplastic and symplastic pathways in Avicennia marina (Forsk.) Vierh. roots revealed by fluorescent tracer dyes, Functional Plant Biology, vol.13, issue.5, pp.637-685, 1986.

R. Moore, Graft formation in Kalanchoe blossfeldiana, Journal of experimental botany, vol.33, issue.3, pp.533-573, 1982.

R. Moore and D. B. Walker, Studies of vegetative compatibility-incompatibility in higher plants. I. A structural study of a compatible autograft in Sedum telephoides (Crassulaceae), American Journal of Botany, vol.68, pp.820-830, 1981.

R. Moore and D. B. Walker, Studies of vegetative compatibility-incompatibility in higher plants. II. A structural study of an incompatible heterograft between Sedum telephoides (Crassulaceae) and Solanum pennellii (Solanaceae), American Journal of Botany, vol.68, pp.831-842, 1981.

L. Moubayidin, S. Perilli, R. D. Ioio, D. Mambro, R. Costantino et al., The rate of cell differentiation controls the Arabidopsis root meristem growth phase, Current Biology, vol.20, issue.12, pp.1138-1181, 2010.

T. J. Mulkey, M. L. Evans, and K. M. Kuzmanoff, The kinetics of abscisic acid action on root growth and gravitropism, Planta, vol.157, pp.150-157, 1983.

J. L. Mullen, C. Wolverton, H. Ishikawa, R. P. Hangarter, and M. L. Evans, Spatial separation of light perception and growth response in maize root phototropism, Plant, cell & environment, vol.25, issue.9, pp.1191-1197, 2002.

M. G. Mullins, A. Bouquet, and L. E. Williams, Biology of the grapevine, 1992.

K. A. Nagel, B. Kastenholz, S. Jahnke, D. Van-dusschoten, T. Aach et al., Temperature responses of roots: impact on growth, root system architecture and implications for phenotyping, Functional Plant Biology, vol.36, issue.11, pp.947-59, 2009.

K. A. Nagel, U. Schurr, and A. Walter, Dynamics of root growth stimulation in Nicotiana tabacum in increasing light intensity, Plant, Cell & Environment, vol.29, issue.10, pp.1936-1981, 2006.

A. Nardini, A. Gascó, F. Raimondo, E. Gortan, M. A. Lo-gullo et al., Is rootstock-induced dwarfing in olive an effect of reduced plant hydraulic efficiency?, Tree Physiology, vol.26, issue.9, pp.1137-1181, 2006.

A. Nardini and F. Pitt, Drought resistance of Quercus pubescens as a function of root hydraulic conductance, xylem embolism and hydraulic architecture. The New Phytologist, vol.143, pp.485-93, 1999.

C. M. Niemietz and S. D. Tyerman, New potent inhibitors of aquaporins: silver and gold compounds inhibit aquaporins of plant and human origin, FEBS Letters, vol.531, pp.443-447, 2002.

N. Nikolaou, M. Koukourikou, and N. Karagiannidis, Effects of various rootstocks on xylem exudates cytokinin content, nutrient uptake and growth patterns of grapevine Vitis vinifera L. cv. Thompson seedless, Agronomie, vol.20, pp.363-373, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00886052

, Root orientation vs water-uptake simulated for monocotyledonous and dicotyledonous desert succulents by a root-segment model, Functional Ecology, vol.7, pp.600-609, 1993.

P. S. Nobel and B. Huang, Hydraulic and structural changes for lateral roots of two desert succulents in response to soil drying and rewetting. International journal of plant sciences, vol.153, pp.163-70, 1992.

P. S. Nobel, P. J. Schulte, and G. B. North, Water influx characteristics and hydraulic conductivity for roots of Agave deserti Engelm, Journal of Experimental Botany, vol.41, issue.4, pp.409-424, 1990.

T. L. Noland, G. H. Mohammed, and M. Scott, The dependence of root growth potential on light level, photosynthetic rate, and root starch content in jack pine seedlings, New Forests, vol.13, issue.1, pp.105-124, 1997.

H. Noronha, A. Agasse, A. P. Martins, M. C. Berny, D. Gomes et al., The grape aquaporin VvSIP1 transports water across the ER membrane, Journal of experimental botany, vol.65, issue.4, pp.981-93, 2013.

G. B. North, P. Martre, and P. S. Nobel, Aquaporins account for variations in hydraulic conductance for metabolically active root regions of Agave deserti in wet, dry, and rewetted soil, Plant, Cell & Environment, vol.27, issue.2, pp.219-247, 2004.

G. B. North and P. S. Nobel, Drought-induced changes in hydraulic conductivity and structure in roots of Ferocactus acanthodes and Opuntia ficus-indica, New Phytologist, vol.120, issue.1, pp.9-19, 1992.

G. B. North and P. S. Nobel, Heterogeneity in water availability alters cellular development and hydraulic conductivity along roots of a desert succulent, Annals of Botany, vol.85, issue.2, pp.247-55, 2000.

G. B. North and P. S. Nobel, Radial hydraulic conductivity of individual root tissues of Opuntia ficus-indica (L.) Miller as soil moisture varies, Annals of Botany, vol.77, issue.2, pp.133-175, 1996.

G. B. North and P. S. Nobel, Water uptake and structural plasticity along roots of a desert succulent during prolonged drought, Plant, Cell & Environment, vol.21, issue.7, pp.705-718, 1998.

O. , V: International Organisation of Vine and Wine

Y. Ohta and P. Van-chuong, Hereditary changes in Capsicum annuum L. I. Induced by ordinary grafting, Euphytica, vol.24, pp.355-368, 1975.

N. Ollat, L. Bordenave, J. P. Tandonnet, J. M. Boursiquot, and E. Marguerit, Grapevine rootstocks: origins and perspectives, I International Symposium on Grapevine Roots, pp.11-22, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01506523

N. Ollat, A. Peccoux, D. Papura, D. Esmenjaud, E. Marguerit et al., Rootstocks as a component of adaptation to environment. Grapevine in a Changing Environment: A Molecular and Ecophysiological Perspective, vol.5, pp.68-75, 2015.

N. Ollat, J. P. Tandonnet, L. Bordenave, S. Decroocq, L. Gé-ny et al., La vigueur confé ré e par le porte-greffe: hypothè ses et pistes de recherches. Bull de l'OIV, vol.869, pp.581-595, 2003.

N. Ollat, J. P. Tandonnet, M. Lafontaine, and H. Schultz, Short and long term effects of three rootstocks on Cabernet Sauvignon vine behaviour and wine quality, Acta Horticulturae, vol.617, pp.95-99, 2003.

M. A. O'neill, T. Ishii, P. Albersheim, and A. G. Darvill, Rhamnogalacturonan II: structure and function of a borate cross-linked cell wall pectic polysaccharide, Annual Review of Plant Biology, vol.55, pp.109-148, 2004.

D. M. Oosterhuis, Resistances to water flow through the soil-plant system. South African journal of science, vol.79, pp.459-65, 1983.

N. Opitz, C. Marcon, A. Paschold, W. A. Malik, A. Lithio et al., Extensive tissue-specific transcriptomic plasticity in maize primary roots upon water deficit, Journal of experimental botany, vol.67, issue.4, pp.1095-107, 2015.

M. Padgett-johnson, L. E. Williams, and M. A. Walker, The influence of Vitis riparia rootstock on water relations and gas exchange of Vitis vinifera cv. Carignane scion under non-irrigated conditions, American Journal of Enology and Viticulture, vol.51, pp.137-143, 2000.

K. K. Pandey, Genetic transformation and "graft-hybridization" in flowering plants, TAG Theoretical and Applied Genetics, vol.47, issue.6, pp.299-302, 1976.

N. V. Paranychianakis, S. Aggelides, and A. N. Angelakis, Influence of rootstock, irrigation level and recycled water on growth and yield of Soultanina grapevines. Agricultural water management, vol.69, pp.13-27, 2004.

B. Parent, C. Hachez, E. Redondo, T. Simonneau, F. Chaumont et al., Drought and abscisic acid effects on aquaporin content translate into changes in hydraulic conductivity and leaf growth rate: a trans-scale approach. Plant physiology, vol.149, pp.2000-2012, 2009.
URL : https://hal.archives-ouvertes.fr/hal-01000840

C. Parmesan and G. Yohe, A globally coherent fingerprint of climate change impacts across natural systems, Nature, vol.421, issue.6918, pp.37-42, 2003.

A. Peccoux, Molecular and physiological characterization of grapevine rootstock adaptation to drought, 2011.

Y. Peng, W. Lin, W. Cai, and R. Arora, Overexpression of a Panax ginseng tonoplast aquaporin alters salt tolerance, drought tolerance and cold acclimation ability in transgenic Arabidopsis plants, Planta, vol.226, issue.3, pp.729-769, 2007.

S. Perilli, L. Moubayidin, and S. Sabatini, Molecular Basis of Cytokinin Action during Root Development. Plant Roots: The Hidden Half, 2013.

I. Perrone, G. Gambino, W. Chitarra, M. Vitali, C. Pagliarani et al., The grapevine root-specific aquaporin VvPIP2; 4N controls root hydraulic conductance and leaf gas exchange under well-watered conditions but not under water stress. Plant physiology, vol.160, pp.965-77, 2012.

C. Perrot-rechenmann, Auxin Signaling in Primary Roots. Plant Roots: The Hidden Half, 2013.

P. E. Pilet and D. Ney, Rapid, localized light effect on root growth in maize, Planta, vol.144, issue.1, pp.109-119, 1978.

P. E. Pilet and M. Saugy, Effect on root growth of endogenous and applied IAA and ABA. A critical reexamination, Plant Physiology, vol.83, pp.33-38, 1987.

P. E. Pilet and F. W. Went, Control of growth of Lens culinaris by temperature and light, American Journal of Botany, vol.1, pp.190-198, 1956.

A. Pina and P. Errea, A review of new advances in mechanism of graft compatibility-incompatibility, Scientia Horticulturae, vol.106, issue.1, pp.1-11, 2005.

A. Pina, P. Errea, and H. J. Martens, Graft union formation and cell-to-cell communication via plasmodesmata in compatible and incompatible stem unions of Prunus spp, Scientia horticulturae, vol.143, pp.144-50, 2012.

L. Taiz and E. Zeiger, Plant Physiology, 2002.

L. Plavcová and U. G. Hacke, Phenotypic and developmental plasticity of xylem in hybrid poplar saplings subjected to experimental drought, nitrogen fertilization, and shading, Journal of Experimental Botany, vol.63, issue.18, pp.6481-91, 2012.

E. S. Poloczanska, C. J. Brown, W. J. Sydeman, W. Kiessling, D. S. Schoeman et al., Global imprint of climate change on marine life, Nature Climate Change, vol.3, issue.10, pp.919-944, 2013.

D. P. Pongracz, ). Pty, C. T. Poroyko, V. Hejlek, L. G. Spollen et al., The maize root transcriptome by serial analysis of gene expression, Plant Physiology, vol.138, issue.3, pp.1700-1710, 1983.

O. Postaire, C. Tournaire-roux, A. Grondin, Y. Boursiac, R. Morillon et al., A PIP1 aquaporin contributes to hydrostatic pressure-induced water transport in both the root and rosette of Arabidopsis, Plant Physiology, vol.152, issue.3, pp.1418-1448, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00508425

A. Pou, H. Medrano, J. Flexas, and S. D. Tyerman, A putative role for TIP and PIP aquaporins in dynamics of leaf hydraulic and stomatal conductances in grapevine under water stress and re-watering, Plant, cell & environment, vol.36, issue.4, pp.828-871, 2013.

K. S. Pregitzer, J. S. King, A. J. Burton, and S. E. Brown, Responses of tree fine roots to temperature, The New Phytologist, vol.147, issue.1, pp.105-120, 2000.

T. Preuten, T. Hohm, S. Bergmann, and C. Fankhauser, Defining the site of light perception and initiation of phototropism in Arabidopsis, Current Biology, vol.23, issue.19, pp.1934-1942, 2013.

G. M. Preston and P. Agre, Appearance of water channels in Xenopus oocytes expressing red cell CHIP28 protein, vol.256, p.385, 1992.

A. H. Price, A. D. Tomos, and D. S. Virk, Genetic dissection of root growth in rice (Oryza sativa L.) I: a hydrophonic screen, Theoretical and Applied Genetics, vol.95, issue.1-2, pp.132-174, 1997.

S. J. Prince, M. Murphy, R. N. Mutava, L. A. Durnell, B. Valliyodan et al., Root xylem plasticity to improve water use and yield in water-stressed soybean, Journal of experimental botany, vol.68, issue.8, pp.2027-2063, 2017.

J. Pritchard, S. Winch, and N. Gould, Phloem water relations and root growth, Functional Plant Biology, vol.27, issue.6, pp.539-587, 2000.

J. Pritchard, The control of cell expansion in roots, New Phytologist, vol.127, issue.1, pp.3-26, 1994.

Y. Qu, S. Liu, W. Bao, X. Xue, Z. Ma et al., Expression of Root Genes in Arabidopsis Seedlings Grown by Standard and Improved Growing Methods. International journal of molecular sciences, vol.18, p.951, 2017.

E. Ramirez-parra, J. Perianez-rodriguez, S. Navarro-neila, I. Gude, M. A. Moreno-risueno et al., The transcription factor OBP4 controls root growth and promotes callus formation, New Phytologist, vol.2017, issue.4, pp.1787-801

T. G. Ranney, N. L. Bassuk, and T. H. Whitlow, Osmotic adjustment and solute constituents in leaves and roots of water-stressed cherry (Prunus) trees, Journal of the American Society for Horticultural Science, vol.116, issue.4, pp.684-692, 1991.

K. E. Reid, N. Olsson, J. Schlosser, F. Peng, and S. T. Lund, An optimized grapevine RNA isolation procedure and statistical determination of reference genes for real-time RT-PCR during berry development, BMC plant biology, vol.6, issue.1, p.27, 2006.

D. M. Riaño-pachón, S. Ruzicic, I. Dreyer, and B. Mueller-roeber, PlnTFDB: an integrative plant transcription factor database, BMC bioinformatics, vol.8, issue.1, p.42, 2007.

D. Richards and J. A. Considine, Suberization and browning of grapevine roots, London: Dr. W. Junk, pp.111-115, 1981.

D. Richards, The grape root system, Horticultural Reviews, vol.5, pp.127-68, 1983.

A. D. Richardson, T. F. Keenan, M. Migliavacca, Y. Ryu, O. Sonnentag et al., Climate change, phenology, and phenological control of vegetation feedbacks to the climate system, Agricultural and Forest Meteorology, vol.169, pp.156-73, 2013.

J. L. Riechmann, J. Heard, G. Martin, L. Reuber, C. Z. Jiang et al., Arabidopsis transcription factors: genome-wide comparative analysis among eukaryotes, Science, vol.290, issue.5499, pp.2105-2115, 2000.

M. Rieger, Offsetting effects of reduced root hydraulic conductivity and osmotic adjustment following drought, Tree Physiology, vol.15, issue.6, pp.379-85, 1995.

R. Ga and J. R. Dunlap, Root growth potential-its development and expression in forest tree seedlings, New Zealand Journal of Forest Science, vol.10, pp.218-248, 1980.

M. L. Robert, H. F. Taylor, and R. L. Wain, Ethylene production by cress roots and excised cress root segments and its inhibition by 3, 5-diiodo-4-hydroxybenzoic acid, Planta, vol.126, issue.3, pp.273-84, 1975.

J. R. Roberts and R. Brown, The development of the graft union, Journal of Experimental Botany, vol.12, pp.294-302, 1961.

J. M. Robertson, R. P. Pharis, Y. Y. Huang, D. M. Reid, and Y. Ec, Drought-induced increases in abscisic acid levels in the root apex of sunflower, Plant Physiology, vol.79, pp.1086-1095, 1985.

M. L. Rodrigues, C. M. Pacheco, and M. M. Chaves, Soil-plant water relations, root distribution and biomass partitioning in Lupinus albus L. under drought conditions, Journal of Experimental Botany, vol.46, issue.8, pp.947-56, 1995.

S. Y. Rogiers, S. J. Clarke, and L. M. Schmidtke, Elevated root-zone temperature hastens vegetative and reproductive development in Shiraz grapevines. Australian journal of grape and wine research, vol.20, pp.123-156, 2014.

S. Y. Rogiers, D. H. Greer, J. M. Hatfield, R. J. Hutton, S. J. Clarke et al., Stomatal response of an anisohydric grapevine cultivar to evaporative demand, available soil moisture and abscisic acid, Tree Physiology, vol.32, pp.249-261, 2012.

T. L. Root, J. T. Price, K. R. Hall, S. H. Schneider, C. Rosenzweig et al., Fingerprints of global warming on wild animals and plants, Nature, vol.421, issue.6918, pp.57-60, 2003.

C. Rosenzweig, D. Karoly, M. Vicarelli, P. Neofotis, Q. Wu et al., Attributing physical and biological impacts to anthropogenic climate change, Nature, vol.453, issue.7193, pp.353-360, 2008.

L. Rossdeutsch, E. Edwards, S. J. Cookson, F. Barrieu, G. A. Gambetta et al., ABA-mediated responses to water deficit separate grapevine genotypes by their genetic background, BMC plant biology, vol.16, issue.1, p.91, 2016.

L. Rossdeutsch, Contribution du mé tabolisme de l'ABA et de la conductivité hydraulique à la ré ponse de la transpiration en situation de contrainte hydrique chez la Vigne -Variabilité gé né tique et effets du greffage, 2015.

T. L. Rost and J. A. Bryant, Root organization and gene expression patterns, Journal of experimental botany, vol.47, issue.11, pp.1613-1641, 1996.

J. H. Rowe, J. F. Topping, J. Liu, and K. Lindsey, Abscisic acid regulates root growth under osmotic stress conditions via an interacting hormonal network with cytokinin, ethylene and auxin, New Phytologist, vol.211, issue.1, pp.225-264, 2016.

E. H. Ruhl, Effect of potassium supply on cation uptake and distribution in grafted Vitis champinii and Vitis berlandieri x Vitis rupestris rootstocks, Australian Journal of Experimental Agriculture, vol.31, issue.5, pp.687-91, 1991.

J. M. Ruiz-lozano, M. Del-mar-alguacil, G. Bá-rzana, P. Vernieri, and R. Aroca, Exogenous ABA accentuates the differences in root hydraulic properties between mycorrhizal and non mycorrhizal maize plants through regulation of PIP aquaporins, Plant molecular biology, vol.70, issue.5, p.565, 2009.

R. S. Russell and V. M. Shorrocks, The relationship between transpiration and the absorption of inorganic ions by intact plants, Journal of experimental botany, vol.10, pp.301-316, 1959.

K. R??i?ka, K. Ljung, S. Vanneste, R. Podhorská, T. Beeckman et al., Ethylene regulates root growth through effects on auxin biosynthesis and transport-dependent auxin distribution. The Plant Cell, vol.19, pp.2197-212, 2007.

S. V. Isayenkov and F. J. Maathuis, The Arabidopsis thaliana aquaglyceroporin AtNIP7; 1 is a pathway for arsenite uptake, Febs Letters, vol.582, issue.11, pp.1625-1633, 2008.

I. N. Saab, R. E. Sharp, J. Pritchard, and G. S. Voetberg, Increased endogenous abscisic acid maintains primary root growth and inhibits shoot growth of maize seedlings at low water potentials. Plant physiology, vol.93, pp.1329-1365, 1990.

I. N. Saab, R. E. Sharp, and J. Pritchard, Effect of inhibition of abscisic acid accumulation on the spatial distribution of elongation in the primary root and mesocotyl of maize at low water potentials, Plant Physiology, vol.99, issue.1, pp.26-33, 1992.

I. N. Saab and R. E. Sharp, Non-hydraulic signals from maize roots in drying soil: inhibition of leaf elongation but not stomatal conductance, Planta, vol.179, issue.4, pp.466-74, 1989.

J. Sachs, Uber das Wachstum der Haupt-und Nebenwurzeln, Arb Bot Inst Wurzburg, vol.1873, pp.584-634

N. Sade, M. Gebretsadik, R. Seligmann, A. Schwartz, R. Wallach et al., The role of tobacco Aquaporin1 in improving water use efficiency, hydraulic conductivity, and yield production under salt stress. Plant physiology, vol.152, pp.245-54, 2010.

N. Sade, B. J. Vinocur, A. Diber, A. Shatil, G. Ronen et al., Improving plant stress tolerance and yield production: is the tonoplast aquaporin SlTIP2; 2 a key to isohydric to anisohydric conversion?, New Phytologist, vol.181, issue.3, pp.651-61, 2009.

J. Sakurai, A. Ahamed, M. Murai, M. Maeshima, and M. Uemura, Tissue and cell-specific localization of rice aquaporins and their water transport activities. Plant and Cell Physiology, vol.49, pp.30-39, 2008.

J. Sakurai, F. Ishikawa, T. Yamaguchi, M. Uemura, and M. Maeshima, Identification of 33 rice aquaporin genes and analysis of their expression and function. Plant and Cell Physiology, vol.46, pp.1568-77, 2005.

J. U. Sakurai-ishikawa, M. A. Murai-hatano, H. Hayashi, A. Ahamed, K. Fukushi et al., Transpiration from shoots triggers diurnal changes in root aquaporin expression, Plant, Cell & Environment, vol.34, issue.7, pp.1150-63, 2011.

N. Z. Saliendra and F. C. Meinzer, Relationship between root/soil hydraulic properties and stomatal behaviour in sugarcane, Functional Plant Biology, vol.16, issue.3, pp.241-50, 1989.

C. Samson and P. Casté-ran, Techniques de multiplication de la vigne, Sciences et Techniques de la Vigne, pp.4-34, 1971.

B. E. Sá-nchez-romera, J. U. Ruiz-lozano, G. Li, L. Dt, M. D. Martinez-ballesta et al., Enhancement of root hydraulic conductivity by methyl jasmonate and the role of calcium and abscisic acid in this process, Plant, cell & environment, vol.37, issue.4, pp.995-1008, 2014.

V. Santoni, L. Verdoucq, N. Sommerer, J. Vinh, D. Pflieger et al., Methylation of aquaporins in plant plasma membrane, Biochemical Journal, vol.400, issue.1, pp.189-97, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00478579

J. I. Sarquis, P. W. Morgan, and W. R. Jordan, Metabolism of 1-aminocyclopropane-1-carboxylic acid in etiolated maize seedlings grown under mechanical impedance. Plant physiology, vol.98, p.1342, 1992.

M. Saugy, G. Mayor, and P. E. Pilet, Endogenous ABA in growing maize roots: light effects. Plant physiology, vol.89, pp.622-629, 1989.

J. W. Schiefelbein and P. N. Benfey, The development of plant roots: new approaches to underground problems, The Plant Cell, vol.3, issue.11, p.1147, 1991.

J. W. Schiefelbein, S. K. Ford, and M. E. Galway, Genetic analysis of root development. In seminars in developmental biology, vol.4, pp.23-30, 1993.

D. Schraut, H. Heilmeier, and W. Hartung, Radial transport of water and abscisic acid (ABA) in roots of Zea mays under conditions of nutrient deficiency, Journal of experimental botany, vol.56, pp.879-886, 2005.

H. R. Schultz, Differences in hydraulic architecture account for near-isohydric and anisohydric behaviour of two field-grown Vitis vinifera L. cultivars during drought, Plant, Cell & Environment, vol.26, pp.1393-1405, 2003.

H. R. Schultz and G. V. Jones, Climate induced historic and future changes in viticulture, Journal of Wine Research, vol.21, issue.2-3, pp.137-182, 2010.

H. R. Schultz and M. A. Matthews, Growth, osmotic adjustment, and cell-wall mechanics of expanding grape leaves during water deficits. Crop science, vol.33, pp.287-94, 1993.

S. Shabala and L. Shabala, Ion transport and osmotic adjustment in plants and bacteria, vol.2, pp.407-426, 2011.

G. Sharipova, D. Veselov, G. Kudoyarova, W. Fricke, I. C. Dodd et al., Exogenous application of abscisic acid (ABA) increases root and cell hydraulic conductivity and abundance of some aquaporin isoforms in the ABA-deficient barley mutant Az34, Annals of botany, vol.118, issue.4, pp.777-85, 2016.

R. E. Sharp and W. J. Davies, Regulation of growth and development of plants growing with a restricted supply of water, Plants under stress, pp.71-93, 1989.

R. E. Sharp and M. E. Lenoble, ABA, ethylene and the control of shoot and root growth under water stress, Journal of experimental botany, vol.53, issue.366, pp.33-40, 2002.

R. E. Sharp, V. Poroyko, L. G. Hejlek, W. G. Spollen, G. K. Springer et al., Root growth maintenance during water deficits: physiology to functional genomics, Journal of Experimental Botany, vol.55, issue.407, pp.2343-51, 2004.

R. E. Sharp, W. K. Silk, and T. C. Hsiao, Growth of the maize primary root at low water potentials I. Spatial distribution of expansive growth, Plant Physiology, vol.87, issue.1, pp.50-57, 1988.

R. E. Sharp, Y. Wu, G. S. Voetberg, I. N. Saab, and M. E. Lenoble, Confirmation that abscisic acid accumulation is required for maize primary root elongation at low water potentials, Journal of Experimental Botany, vol.1, pp.1743-51, 1994.

M. C. Shelden, S. M. Howitt, B. N. Kaiser, and S. D. Tyerman, Identification and functional characterisation of aquaporins in the grapevine, Vitis vinifera, Functional Plant Biology, vol.36, issue.12, pp.1065-78, 2009.

K. Shinozaki, K. Yamaguchi-shinozaki, T. Mizoguchi, T. Urao, T. Katagiri et al., Molecular responses to water stress in Arabidopsis thaliana, Journal of Plant Research, vol.111, issue.2, pp.345-51, 1998.

F. Siefritz, M. T. Tyree, C. Lovisolo, A. Schubert, and R. Kaldenhoff, PIP1 plasma membrane aquaporins in tobacco from cellular effects to function in plants. The Plant Cell, vol.14, pp.869-76, 2002.

J. Siemens and J. J. Zwiazek, Changes in root water flow properties of solution culture-grown trembling aspen (Populus tremuloides) seedlings under different intensities of water-deficit stress, Physiologia Plantarum, vol.121, issue.1, pp.44-53, 2004.

J. A. Siemens and J. J. Zwiazek, Effects of water deficit stress and recovery on the root water relations of trembling aspen (Populus tremuloides) seedlings. Plant science, vol.165, pp.113-133, 2003.

B. Simane, J. M. Peacock, and P. C. Struik, Differences in developmental plasticity and growth rate among drought-resistant and susceptible cultivars of durum wheat (Triticum turgidum L. var. durum). Plant and soil, vol.157, pp.155-66, 1993.

K. G. Skene and G. H. Kerridge, Effect of root temperature on cytokinin activity in root exudate of Vitis vinifera L. Plant physiology, vol.42, pp.1131-1140, 1967.

K. Skene and A. J. Antcliff, A comparative study of cytokinin levels in bleeding sap of Vitis vinifera (L.) and the two grapevine rootstocks, Salt Creek and 1613, Journal of Experimental Botany, vol.23, pp.283-293, 1972.

R. H. Skinner and J. W. Radin, The effect of phosphorus nutrition on water flow through the apoplastic bypass in cotton roots, Journal of Experimental Botany, vol.45, issue.4, pp.423-431, 1994.

D. R. Smart, E. Schwass, E. , A. Lakso, A. Morano et al., Grapevine rooting patterns: a comprehensive analysis and a review, American Journal of Enology and Viticulture, vol.57, pp.89-104, 2006.

R. E. Smart and B. G. Coombe, Water relations in grapevine. Water deficits and plants growth, pp.137-196, 1983.

C. Soar, P. Dry, and B. Loveys, Scion photosynthesis and leaf gas exchange in Vitis vinifera L. cv. Shiraz: mediation of rootstock effects via xylem sap ABA, Australian Journal of Grape and Wine Research, vol.12, pp.82-96, 2006.

C. J. Soar, J. Speirs, S. M. Maffei, and B. R. Loveys, Gradients in stomatal conductance, xylem sap ABA and bulk leaf ABA along canes of Vitis vinifera cv. Shiraz: molecular and physiological studies investigating their source, Functional Plant Biology, vol.31, issue.6, pp.659-69, 2004.

L. I. Solari, S. Johnson, and T. M. Dejong, Hydraulic conductance characteristics of peach (Prunus persica) trees on different rootstocks are related to biomass production and distribution, Tree Physiology, vol.26, pp.1343-1350, 2006.

L. Song, S. Prince, B. Valliyodan, T. Joshi, J. V. Santos et al., Genome-wide transcriptome analysis of soybean primary root under varying water-deficit conditions, BMC genomics, vol.17, issue.1, p.57, 2016.

C. Sorce, R. Massai, P. Picciarelli, and R. Lorenzi, Hormonal relationships in xylem sap of grafted and ungrafted Prunus rootstocks, Scientia Horticulturae, vol.93, issue.3, pp.333-375, 2002.

J. M. Southey, Grapevine rootstocks performance under diverse conditions in South Africa, Rootstock Seminar: A Worldwide Perspective, pp.27-51, 1992.

W. G. Spollen, R. E. Sharp, I. N. Saab, and Y. Wu, Regulation of cell expansion in roots and shoots at low water potentials, Water deficits. Plant responses from cell to community, pp.37-52, 1993.

S. Stegemann and R. Bock, Exchange of genetic material between cells in plant tissue grafts, Science, vol.324, pp.649-651, 2009.

S. Stegemann, M. Keuthe, S. Greiner, and R. Bock, Horizontal transfer of chloroplast genomes between plant species, Proceedings of the National Academy of Sciences, vol.109, pp.2434-2442, 2012.

E. Steudle, Water uptake by plant roots: an integration of views, Plant and Soil, vol.226, issue.1, pp.45-56, 2000.

E. Steudle, Water uptake by roots: effects of water deficit, Journal of experimental botany, vol.51, issue.350, pp.1531-1573, 2000.

E. Steudle and C. A. Peterson, How does water get through roots, Journal of experimental Botany, vol.49, issue.322, pp.775-88, 1998.

R. M. Stevens, G. Harvey, and D. Aspinall, Grapevine growth of shoots and fruit linearly correlate with water stress indices based on root-weighted soil matric potential, Australian Journal of Grape and Wine Research, vol.1, issue.2, pp.58-66, 1995.

F. L. Stoddard and M. E. Mccully, Histology of the development of the graft union in pea roots, Canadian Journal of Botany, vol.57, issue.14, pp.1486-501, 1979.

L. C. Strader, G. L. Chen, and B. Bartel, Ethylene directs auxin to control root cell expansion, Plant Journal, vol.64, pp.874-884, 2010.

N. R. Street, O. Skogström, A. Sjödin, J. Tucker, M. Rodríguez-acosta et al., The genetics and genomics of the drought response in Populus, The Plant Journal, vol.48, issue.3, pp.321-362, 2006.

M. Sutka, G. Li, J. Boudet, Y. Boursiac, P. Doumas et al., Natural variation of root hydraulics in Arabidopsis grown in normal and salt-stressed conditions, Plant Physiology, vol.155, issue.3, pp.1264-76, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00576512

R. Swarup, P. Perry, D. Hagenbeek, D. Van-der-straeten, G. T. Beemster et al., Ethylene upregulates auxin biosynthesis in Arabidopsis seedlings to enhance inhibition of root cell elongation. The Plant Cell, vol.19, pp.2186-96, 2007.

J. Takano, M. Wada, U. Ludewig, G. Schaaf, V. Wiré-n et al., The Arabidopsis major intrinsic protein NIP5; 1 is essential for efficient boron uptake and plant development under boron limitation. The Plant Cell, vol.18, pp.1498-509, 2006.

M. Tanaka, I. S. Wallace, J. Takano, D. M. Roberts, and T. Fujiwara, NIP6;1 is a boric acid channel for preferential transport of boron to growing shoot tissues in Arabidopsis. The Plant Cell, vol.20, pp.2860-75, 2008.

J. P. Tandonnet, L. Bordenave, S. Decroocq, S. Cookson, and N. Ollat, Etude de la variabilité gé né tique au sein du genre Vitis pour le caractè re vigueur confé ré e par le porte-greffe, Oeno 2011, Proceedings of the 9 th Bordeaux International Symposium of Enology, pp.180-185, 2012.

J. P. Tandonnet, S. J. Cookson, P. Vivin, and N. Ollat, Scion genotype controls biomass allocation and root development in grafted grapevine, Australian Journal of Grape and Wine Research, vol.16, issue.2, pp.290-300, 2010.

J. Tandonnet, J. Soyer, J. Gaudillere, S. Decroocq, L. Bordenave et al., Long term effects of nitrogen and water supply on confered vigour and yield by SO4 and Riparia Gloire de Montpellier rootstocks, Journal International des Sciences de la Vigne et du Vin, vol.42, p.89, 2008.

E. Tanimoto and K. Hirano, Role of Gibberellins in Root Growth. Plant Roots: The Hidden Half, 2013.

J. Tardá-guila, M. Bertamini, C. Giulivo, and A. Scienza, Rootstock effects on growth dry weight partitioning and mineral nutrient concentration of grapevine, Acta Horticulturae, vol.388, pp.111-116, 1995.

F. Tardieu, Analysis of the spatial variability of maize root density, Plant and Soil, vol.107, issue.2, pp.259-66, 1988.

A. B. Tate, Global warming's impact on wine, Journal of Wine Research, vol.12, issue.2, pp.95-109, 2001.

H. M. Taylor and L. H. Ratliff, Root elongation rates of cotton and peanuts as a function of soil strength and water content, Soil Science, vol.108, pp.113-119, 1969.

H. M. Taylor, D. R. Upchurch, and B. L. Mcmichael, Applications and limitations of rhizotrons and minirhizotrons for root studies, Plant and Soil, vol.129, issue.1, pp.29-35, 1990.

R. O. Teskey and T. M. Hinckley, Influence of temperature and water potential on root growth of white oak, Physiologia plantarum, vol.52, issue.3, pp.363-372, 1981.

P. Tocquin, L. Corbesier, A. Havelange, A. Pieltain, E. Kurtem et al., A novel high efficiency, low maintenance, hydroponic system for synchronous growth and flowering of Arabidopsis thaliana, BMC plant biology, vol.3, issue.1, 2003.

S. Tombesi, A. Nardini, T. Frioni, M. Soccolini, C. Zadra et al., Stomatal closure is induced by hydraulic signals and maintained by ABA in droughtstressed grapevine, Scientific Reports, vol.5, p.12449, 2015.

S. Törnroth-horsefield, Y. Wang, K. Hedfalk, U. Johanson, M. Karlsson et al., Structural mechanism of plant aquaporin gating, Nature, vol.439, issue.7077, pp.688-94, 2006.

J. G. Torrey, Effects of light on elongation and branching in pea roots. Plant physiology, vol.27, p.591, 1952.

C. Tournaire-roux, M. Sutka, H. Javot, E. Gout, P. Gerbeau et al., Cytosolic pH regulates root water transport during anoxic stress through gating of aquaporins, Nature, vol.25, issue.6956, pp.393-400, 2003.

S. Tramontini, M. Vitali, L. Centioni, A. Schubert, and C. Lovisolo, Rootstock control of scion response to water stress in grapevine, Environmental and Experimental Botany, vol.93, pp.20-26, 2013.

P. Trifilo, F. Raimondo, A. Nardini, M. A. Lo-gullo, and S. Salleo, Drought resistance of Ailanthus altissima: root hydraulics and water relations, Tree Physiology, vol.24, issue.1, pp.107-121, 2004.

R. Tuberosa, M. C. Sanguineti, P. Landi, M. M. Giuliani, S. Salvi et al., Identification of QTLs for root characteristics in maize grown in hydroponics and analysis of their overlap with QTLs for grain yield in the field at two water regimes, Plant molecular biology, vol.48, issue.5-6, pp.697-712, 2002.

L. M. Turner, Root growth of seedlings of Pinus echinata and Pinus taeda, Journal of Agricultural Research, vol.53, pp.145-154, 1936.

N. C. Turner, Adaptation to water deficits: a changing perspective, Functional Plant Biology, vol.13, issue.1, pp.175-90, 1986.

T. Tworkoski and G. Fazio, Effects of size-controlling apple rootstocks on growth, abscisic acid, and hydraulic conductivity of scion of different vigor, Internal Journal of Fruit Science, vol.15, pp.369-381, 2015.

S. D. Tyerman, C. M. Niemietz, and H. Bramley, Plant aquaporins: multifunctional water and solute channels with expanding roles, Plant, Cell & Environment, vol.25, issue.2, pp.173-94, 2002.

M. T. Tyree, V. Velez, and J. W. Dalling, Growth dynamics of root and shoot hydraulic conductance in seedlings of five neotropical tree species: scaling to show possible adaptation to differing light regimes, Oecologia, vol.114, issue.3, pp.293-301, 1998.

. Ubeda-tomá-s-s1, F. Federici, I. Casimiro, G. T. Beemster, R. Bhalerao et al., Gibberellin signaling in the endodermis controls Arabidopsis root meristem size, Current Biology, vol.19, pp.1194-1199, 2009.

. Ubeda-tomá-s-s1, R. Swarup, J. Coates, K. Swarup, L. Laplaze et al., Root growth in Arabidopsis requires gibberellin/DELLA signalling in the endodermis, Nature Cell Biology, vol.10, pp.625-628, 2008.

T. A. Valentine, P. D. Hallett, K. Binnie, M. W. Young, G. R. Squire et al., Soil strength and macropore volume limit root elongation rates in many UK agricultural soils, Annals of Botany, vol.2012, issue.2, pp.259-70

C. M. Van-der-weele, W. G. Spollen, R. E. Sharp, and T. I. Baskin, Growth of Arabidopsis thaliana seedlings under water deficit studied by control of water potential in nutrient-agar media, Journal of Experimental Botany, vol.51, issue.350, pp.1555-62, 2000.

D. Van-dusschoten, R. Metzner, J. Kochs, J. A. Postma, D. Pflugfelder et al.,

, Quantitative 3D analysis of plant roots growing in soil using magnetic resonance imaging. Plant physiology, vol.170, pp.1176-88, 2016.

C. Van-leeuwen, O. Tregoat, X. Choné, B. Bois, D. Pernet et al., Vine water status is a key factor in grape ripening and vintage quality for red Bordeaux wine. How can it be assessed for vineyard management purposes, Journal International des Sciences de la Vigne et du Vin, vol.43, pp.121-134, 2009.
URL : https://hal.archives-ouvertes.fr/hal-00447594

J. L. Van-zyl, Response of the grapevine root to soil water regimes and irrigation systems, Stellenboch. Department of Agriculture and Water Supply, pp.30-43, 1988.

R. K. Vandeleur, G. Mayo, M. C. Shelden, M. Gilliham, B. N. Kaiser et al., The role of plasma membrane intrinsic protein aquaporins in water transport through roots: diurnal and drought stress responses reveal different strategies between isohydric and anisohydric cultivars of grapevine, Plant Physiology, vol.149, issue.1, pp.445-60, 2009.

R. K. Vandeleur, E. C. Vendruscolo, I. Schuster, M. Pileggi, C. A. Scapim et al., Stress-induced synthesis of proline confers tolerance to water deficit in transgenic wheat, Journal of Plant Physiology, vol.164, pp.1367-1376, 2007.

R. Vera-estrella, B. J. Barkla, H. J. Bohnert, and O. Pantoja, Novel regulation of aquaporins during osmotic stress, Plant Physiology, vol.135, issue.4, pp.2318-2347, 2004.

G. S. Voetberg and R. E. Sharp, Growth of the maize primary root at low water potentials III. Role of increased proline deposition in osmotic adjustment, Plant Physiology, vol.96, issue.4, pp.1125-1155, 1991.

V. Arx, G. Archer, S. R. Hughes, and M. K. , Long-term functional plasticity in plant hydraulic architecture in response to supplemental moisture, Annals of botany, vol.109, issue.6, pp.1091-100, 2012.

R. R. Walker, D. H. Blackmore, P. R. Clingeleffer, and R. L. Correll, Rootstock effects on salt tolerance of irrigated field-grown grapevines (Vitis vinifera L. cv. Sultana). 1. Yield and vigour inter-relationships, Australian Journal of Grape and Wine Research, vol.8, pp.3-14, 2002.

A. Walter and K. A. Nagel, Root growth reacts rapidly and more pronounced than shoot growth towards increasing light intensity in tobacco seedlings, Plant signaling & behavior, vol.1, issue.5, pp.225-231, 2006.

A. Walter and U. Schurr, Dynamics of leaf and root growth: endogenous control versus environmental impact, Annals of botany, vol.95, issue.6, pp.891-900, 2005.

A. Walter, W. K. Silk, and U. Schurr, Environmental effects on spatial and temporal patterns of leaf and root growth. Annual review of plant biology, vol.60, pp.279-304, 2009.

A. Walter, H. Spies, S. Terjung, R. Küsters, N. Kirchgeßner et al., Spatio-temporal dynamics of expansion growth in roots: automatic quantification of diurnal course and temperature response by digital image sequence processing, Journal of experimental botany, vol.53, issue.369, pp.689-98, 2002.

G. R. Walther, E. Post, P. Convey, A. Menzel, C. Parmesan et al., Ecological responses to recent climate change, Nature, vol.416, issue.6879, pp.389-95, 2002.

X. Wan and J. J. Zwiazek, Root water flow and leaf stomatal conductance in aspen (Populus tremuloides) seedlings treated with abscisic acid, Planta, vol.213, pp.741-747, 2001.

K. Wang, Z. Wang, F. Li, W. Ye, J. Wang et al., The draft genome of a diploid cotton Gossypium raimondii, Nature genetics, vol.44, issue.10, pp.1098-103, 2012.

Z. Y. Wang, Y. L. Tang, F. S. Zhang, and H. Wang, Effect of boron and low temperature on membrane integrity of cucumber leaves, Journal of plant nutrition, vol.22, issue.3, pp.543-50, 1999.

S. Watts, J. L. Rodriguez, E. Se, and W. J. Davies, Root and shoot growth of plants treated with abscisic acid, Annals of Botany, vol.47, issue.5, pp.595-602, 1981.

A. Weig, C. Deswarte, and M. J. Chrispeels, The major intrinsic protein family of Arabidopsis has 23 members that form three distinct groups with functional aquaporins in each group, Plant Physiology, vol.114, issue.4, pp.1347-57, 1997.

C. E. Wells and D. M. Eissenstat, Beyond the roots of young seedlings: the influence of age and order on fine root physiology, Journal of Plant Growth Regulation, vol.21, issue.4, pp.324-358, 2003.

T. Werner, V. Motyka, V. Laucou, R. Smets, H. Van-onckelen et al., Cytokinin-deficient transgenic Arabidopsis plants show multiple developmental alterations indicating opposite functions of cytokinins in the regulation of shoot and root meristem activity. The Plant Cell, vol.15, pp.2532-50, 2003.

T. Werner, E. Nehnevajova, I. Köllmer, . Nová-k-o, M. Strnad et al., Root-specific reduction of cytokinin causes enhanced root growth, drought tolerance, and leaf mineral enrichment in Arabidopsis and tobacco. The Plant Cell, vol.22, pp.3905-3925, 2010.

B. S. Wiegers, A. Y. Cheer, and W. K. Silk, Modeling the hydraulics of root growth in three dimensions with phloem water sources, Plant Physiology, vol.150, issue.4, pp.2092-103, 2009.

L. C. Williamson, S. P. Ribrioux, A. H. Fitter, and H. O. Leyser, Phosphate availability regulates root system architecture in Arabidopsis. Plant physiology, vol.126, pp.875-82, 2001.

M. A. Wimmer, G. Lochnit, E. Bassil, K. H. Mühling, and H. E. Goldbach, Membrane-associated, boron-interacting proteins isolated by boronate affinity chromatography. Plant and Cell Physiology, vol.50, pp.1292-304, 2009.

I. Winicov, Alfin1 transcription factor overexpression enhances plant root growth under normal and saline conditions and improves salt tolerance in alfalfa, Planta, vol.210, issue.3, pp.416-438, 2000.

D. C. Wong, L. Gutierrez, R. Gambetta, G. A. Castellarin, and S. D. , Genome-wide analysis of cis-regulatory element structure and discovery of motif-driven gene co-expression networks in grapevine, DNA Research, vol.24, p.61, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01601097

D. Wong, L. Zhang, M. I. Castellarin, S. D. Gambetta, and G. A. , Submitted Woodham RC, Alexander DM. The effect of root temperature on development of small fruiting Sultana vines, BMC Genomics, vol.5, pp.345-350, 1996.

K. E. Wright and N. L. Barton, Transpiration and the absorption and distribution of radioactive phosphorus in plants, Plant Physiology, vol.30, p.386, 1995.

Y. Wu and D. J. Cosgrove, Adaptation of roots to low water potentials by changes in cell wall extensibility and cell wall proteins, Journal of Experimental Botany, vol.51, issue.350, pp.1543-53, 2000.

Y. Wu, R. E. Sharp, D. M. Durachko, and D. J. Cosgrove, Growth maintenance of the maize primary root at low water potentials involves increases in cell-wall extension properties, expansin activity, and wall susceptibility to expansins, Plant Physiology, vol.111, issue.3, pp.765-72, 1996.

Y. Wu, W. G. Spollen, R. E. Sharp, P. R. Hetherington, and S. C. Fry, Root growth maintenance at low water potentials (increased activity of xyloglucan endotransglycosylase and its possible regulation by abscisic acid), Plant Physiology, vol.106, issue.2, pp.607-622, 1994.

Y. Wu, E. T. Thorne, R. E. Sharp, and D. J. Cosgrove, Modification of expansin transcript levels in the maize primary root at low water potentials, Plant Physiology, vol.126, issue.4, pp.1471-1480, 2001.

L. Xiong, R. G. Wang, G. Mao, and J. M. Koczan, Identification of drought tolerance determinants by genetic analysis of root response to drought stress and abscisic acid. Plant physiology, vol.142, pp.1065-74, 2006.

W. Xu, L. Jia, W. Shi, J. Liang, F. Zhou et al., Abscisic acid accumulation modulates auxin transport in the root tip to enhance proton secretion for maintaining root growth under moderate water stress, New Phytologist, vol.197, issue.1, pp.139-50, 2013.

S. Yamada, M. Katsuhara, W. B. Kelly, C. B. Michalowski, and H. J. Bohnert, A family of transcripts encoding water channel proteins: tissue-specific expression in the common ice plant. The Plant Cell, vol.7, pp.1129-1171, 1995.

B. Yang, M. He, V. Shishov, I. Tychkov, E. Vaganov et al., New perspective on spring vegetation phenology and global climate change based on Tibetan Plateau treering data, Proceedings of the National Academy of Sciences, vol.114, pp.6966-71, 2017.

Y. Yang, L. Mao, Y. Jittayasothorn, Y. Kang, C. Jiao et al., Messenger RNA exchange between scions and rootstocks in grafted grapevines, BMC plant biology, vol.15, issue.1, p.251, 2015.

K. Yokawa, R. Fasano, T. Kagenishi, and F. Balu?ka, Light as stress factor to plant roots-case of root halotropism. Frontiers in plant science, p.5, 2014.

K. Yokawa, T. Kagenishi, and F. Balu?ka, Root photomorphogenesis in laboratory-maintained Arabidopsis seedlings. Trends in plant science, vol.18, pp.117-126, 2013.

K. Yokawa, T. Kagenishi, T. Kawano, S. Mancuso, and F. Balu?ka, Illumination of Arabidopsis roots induces immediate burst of ROS production. Plant signaling & behavior, vol.6, pp.1460-1464, 2011.

A. Zelleke and W. M. Kliewer, Effect of root temperature, rootstock and fertilization on bud-break, shoot growth and composition of 'Cabernet Sauvignon' grapevines, Scientia Horticulturae, vol.13, issue.4, pp.339-386, 1980.

A. Zelleke and W. M. Kliewer, Influence of root temperature and rootstock on budbreak, shoot growth, and fruit composition of Cabernet Sauvignon grapevines grown under controlled conditions, American journal of enology and viticulture, vol.30, issue.4, pp.312-319, 1979.

A. Zelleke, The effect and interaction of root temperature with rootstock, fertilization and air temperature on bud-break, growth and composition of grapevines (Vitis vinifera L, 1977.

L. Zhang, E. Marguerit, L. Rossdeutsch, N. Ollat, and G. A. Gambetta, The influence of grapevine rootstocks on scion growth and drought resistance. Theoretical and Experimental Plant Physiology, vol.28, pp.143-57, 2016.

W. H. Zhang and S. D. Tyerman, Inhibition of water channels by HgCl2 in intact wheat root cells, Plant Physiology, vol.120, pp.849-857, 1999.

D. Zhao and G. Q. Song, Rootstock-to-scion transfer of transgene-derived small interfering RNAs and their effect on virus resistance in nontransgenic sweet cherry, Plant biotechnology journal, vol.12, issue.9, pp.1319-1347, 2014.

S. Zhou, W. Hu, X. Deng, Z. Ma, L. Chen et al., Overexpression of the wheat aquaporin gene, TaAQP7, enhances drought tolerance in transgenic tobacco, PLoS One, vol.7, issue.12, p.52439, 2012.

C. Zhu, D. Schraut, W. Hartung, and . Schä, Differential responses of maize MIP genes to salt stress and ABA, Journal of Experimental Botany, vol.56, issue.421, pp.2971-81, 2005.

H. M. Zimmermann, K. Hartmann, L. Schreiber, and E. Steudle, Chemical composition of apoplastic transport barriers in relation to radial hydraulic conductivity of corn roots (Zea mays L.), Planta, vol.210, issue.2, pp.302-313, 2000.