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Local Maladaptation in the Anther-Smut Fungus Microbotryum violaceum to Its Host Plant Silene latifolia: Evidence from a Cross-Inoculation Experiment, Evolution, vol.53, p.395, 1999. ,
Effect of Nitrogen Fertilization on Phenol Metabolism and Stem Rust Susceptibility of Wheat, Journal of Phytopathology, vol.51, pp.252-261, 1964. ,
Significance of the ratio between the water-soluble aromatic and nitrogen constituents of apple and pear in the host-parasite relationships of venturia species, Nature, vol.16, pp.690-691, 1954. ,
Latent Period and Infection Efficiency of Puccinia recondita f. sp. tritici Populations Isolated from Different Cultivars, Phytopathology, vol.81, pp.435-439, 1991. ,
Spatial scale of local adaptation in a plant-pathogen metapopulation, Journal of Evolutionary Biology, vol.18, pp.930-938, 2005. ,
Some Effects of Temperature and Nitrogen Supply on Wheat Powdery Mildew, Annals of Applied Biology, vol.40, pp.312-322, 1953. ,
Effects of Nutrition on the Incidence of Barley Powdery Mildew, Plant Pathology, vol.11, pp.133-136, 1962. ,
Spatial evolutionary epidemiology of spreading epidemics, Proceedings of the Royal Society B: Biological Sciences, vol.283, 2016. ,
URL : https://hal.archives-ouvertes.fr/hal-02122259
Expression of adult resistance to stripe rust at different growth stages of wheat, Plant Disease, pp.375-379, 1996. ,
Nitrogen uptake, assimilation and remobilization in plants: Challenges for sustainable and productive agriculture, Annals of Botany, vol.105, pp.1141-1157, 2010. ,
URL : https://hal.archives-ouvertes.fr/hal-01203920
Costs of Defense and a Test of the Carbon-Nutrient Balance and Growth-Differentiation Balance Hypotheses for Two Co-Occurring Classes of Plant Defense, PLoS ONE, vol.7, 2012. ,
Effect of nitrogenous fertilizer on biochemical processes that could affect lesion size of rice blast, Phytopathology, vol.63, pp.1202-1203, 1973. ,
The effect of ample nitrogen fertilizer on cell wall materials and its significance to rice blast disease, Annual Phytopathological Society of Japan, vol.41, pp.56-61, 1975. ,
Pathogen population genetics, evolutionary potential, and durable resistance, Annual Review of Phytopathology, vol.40, pp.349-379, 2002. ,
Landscape Epidemiology of Emerging Infectious Diseases in Natural and Human-Altered Ecosystems, Annual Review of Phytopathology, vol.50, pp.379-402, 2012. ,
Landscape heterogeneity and disease spread: Experimental approaches with a plant pathogen, Ecological Applications, vol.21, pp.321-328, 2011. ,
Moving nitrogen to the centre of plant defence against pathogens, Annals of Botany, vol.119, pp.703-709, 2017. ,
Edge effects in fragmented forests-implications for conservation, Trends in Ecology & Evolution, vol.10, pp.58-62, 1995. ,
Irrigation strategy, nitrogen application and fungicide control in winter wheat on a sandy soil. I. Yield, yield components and nitrogen uptake, Journal of Agricultural Science, vol.134, pp.1-11, 2000. ,
Pathogen population dynamics in agricultural landscapes: The Ddal modelling framework, Genetics and Evolution, vol.27, pp.509-520, 2014. ,
Crop pathogen emergence and evolution in agro-ecological landscapes, Evolutionary Applications, vol.8, pp.385-402, 2015. ,
Shared influence of pathogen and host genetics on a trade-off between latent period and spore production capacity in the wheat pathogen, Puccinia triticina, Evolutionary Applications, vol.6, pp.303-312, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01001587
Expression of adult plant resistance and its effect on the development of Puccinia striiformis f.sp. tritici in some Australian wheat cultivars, Plant Pathology, vol.38, pp.200-208, 1989. ,
Local population differentiation for compatibility in an annual legume and its hostspecific fungal pathogen, Evolution, vol.39, pp.713-723, 1985. ,
Infection structures of biotrophic and hemibiotrophic fungal plant pathogens, Molecular Plant Pathology, vol.2, pp.101-108, 2001. ,
Prevalence and distribution of common barberry, the alternate host of Puccinia graminis,in Minnesota, Plant Dis, vol.89, pp.159-163, 2005. ,
Landscape epidemiology of plant diseases, Journal of The Royal Society Interface, vol.4, pp.963-972, 2007. ,
Live where you thrive: joint evolution of habitat choice and local adaptation fa-cilitates specialization and promotes diversity, American Naturalist, vol.174, pp.141-169, 2009. ,
Sudden oak death: endangering California and Oregon forest ecosystems, Frontiers in Ecology and the ?, vol.1, pp.197-204, 2003. ,
Quantification of the effects of Septoria tritici blotch on wheat leaf gas exchange with respect to lesion age, leaf number, and leaf nitrogen status, In Journal of Experimental Botany, pp.225-234, 2006. ,
Coupling a 3D virtual wheat (Triticum aestivum) plant model with a Septoria tritici epidemic model (Septo3D): A new approach to investigate plant-pathogen interactions linked to canopy architecture, Functional Plant Biology, vol.35, pp.997-1013, 2008. ,
URL : https://hal.archives-ouvertes.fr/hal-01192058
A plant-pathogen model reveals how plant architecture and foliar senescence impact the race between wheat growth and Zymoseptoria tritici epidemics, Annals of Botany, 2017. ,
Short-distance dispersal of wheat rust spores, Agronomie, vol.20, issue.7, pp.757-767, 2000. ,
URL : https://hal.archives-ouvertes.fr/hal-00886080
The Effect of Nitrogen Fertilization on the Expression of Slow-Mildewing Resistance in Knox Wheat, Phytopathology, vol.77, pp.1051-1056, 1977. ,
Effects of temperature, leaf wetness and cultivar on the latent period of Mycosphaerella graminicola on winter wheat, Plant Pathology, vol.39, pp.255-268, 1990. ,
Functional-structural plant models: A growing paradigm for plant studies, Annals of Botany, vol.114, pp.599-603, 2014. ,
Wheat Powdery Mildew Investigations, Annals of Applied Biology, vol.37, pp.570-583, 1950. ,
Lack of evidence for local adaptation to individual plant clones or site by a mobile specialist herbivore, Oecologia, vol.110, pp.77-85, 1997. ,
Assessment of quantitative traits of aggressiveness in Mycosphaerella graminicola on adult wheat plants, Plant Pathology, vol.62, pp.1330-1341, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01004711
Tradeoff between intra-and interannual scales in the evolution of aggressiveness in a local plant pathogen population, 2017. ,
Apical leaf necrosis and leaf nitrogen dynamics in diseased leaves: A model study, Plant Pathology, vol.56, pp.424-436, 2007. ,
URL : https://hal.archives-ouvertes.fr/hal-01191925
Apical leaf necrosis as a defence mechanism against pathogen attack: Effects of high nutrient availability on onset and rate of necrosis, Plant Pathology, vol.57, pp.1009-1016, 2008. ,
High levels of auto-infection in plant pathogens favour short latent periods: A theoretical approach, Evolutionary Ecology, vol.27, pp.409-428, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01190640
The Impact of Crop Rotation and N Fertilization on the Leaf Area Index , Leaf Disease and Yield of Winter Wheat, International Scholarly and Scientific Research & Innovation, vol.7, pp.1031-1034, 2013. ,
Functional-structural plant modelling: A new versatile tool in crop science, Journal of Experimental Botany, p.61, 2010. ,
URL : https://hal.archives-ouvertes.fr/hal-01132296
Vertical Distribution of Nitrogen in Different Layers of Leaf and Stem and Their Relationship with Grain Quality of Winter Wheat, Journal of Plant Nutrition, vol.28, pp.73-91, 2005. ,
Host defence in a developmental context, Molecular Plant Pathology, vol.6, pp.347-360, 2005. ,
On the political economy of plant diseases epidemics -Capita selecta in historical epidemiology, pp.39-119, 2008. ,
Local adaptation and effect of host genotype on the rate of pathogen evolution: An experimental test in a plant pathosystem, Journal of Evolutionary Biology, vol.15, pp.634-647, 2002. ,
Achieving sustainable plant disease management through evolutionary principles, Trends in Plant Science, vol.19, pp.570-575, 2014. ,
Playing on a Pathogen's Weakness: Using Evolution to Guide Sustainable Plant Disease Control Strategies, Annual Review of Phytopathology, vol.53, pp.19-43, 2015. ,
URL : https://hal.archives-ouvertes.fr/hal-01536434
Modelling the effect of wheat canopy architecture as affected by sowing density on Septoria tritici epidemics using a coupled epidemicvirtual plant model, Annals of Botany, vol.108, pp.1179-1194, 2011. ,
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Crop pathogen emergence and evolution in agroecological landscapes, Evolutionary Applications, vol.8, pp.385-402, 2015. ,
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Coupling a 3D virtual wheat (Triticum aestivum) plant model with a Septoria tritici epidemic model (Septo3D): A new approach to investigate plant-pathogen interactions linked to canopy architecture, Functional Plant Biology, vol.35, pp.997-1013, 2008. ,
URL : https://hal.archives-ouvertes.fr/hal-01192058
A plant-pathogen model reveals how plant architecture and foliar senescence impact the race between wheat growth and Zymoseptoria tritici epidemics, Annals of Botany, 2017. ,
Life history evolution, 2002. ,
Functional-structural plant models: A growing paradigm for plant studies, Annals of Botany, vol.114, pp.599-603, 2014. ,
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Modelling the effect of wheat canopy architecture as affected by sowing density on Septoria tritici epidemics using a coupled epidemicvirtual plant model, Annals of Botany, vol.108, pp.1179-1194, 2011. ,
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A host-pathogen simulation model: Powdery mildew of grapevine, Plant Pathology, vol.57, pp.493-508, 2008. ,
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Vers la compréhension des épidémies fongiques foliaires par modélisation multiéchelle dans les couverts architecturés, 2015. ,
Modelling coupled peach tree-aphid population dynamics and their control by winter pruning and nitrogen fertilization, Ecological Modelling, vol.221, pp.2363-2373, 2010. ,
Functional-structural plant modelling, New Phytologist, vol.166, pp.705-708, 2005. ,
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Edge effects, not connectivity, determine the incidence and development of a foliar fungal plant disease, Ecology, vol.92, pp.1551-1558, 2011. ,
Pathogenic attributes of Sclerotinia sclerotiorum: Switching from a biotrophic to necrotrophic lifestyle, Plant Science, vol.233, pp.53-60, 2015. ,
Local Maladaptation in the Anther-Smut Fungus Microbotryum violaceum to Its Host Plant Silene latifolia: Evidence from a Cross-Inoculation Experiment, Evolution, vol.53, p.395, 1999. ,
Effect of Nitrogen Fertilization on Phenol Metabolism and Stem Rust Susceptibility of Wheat, Journal of Phytopathology, vol.51, pp.252-261, 1964. ,
Significance of the ratio between the water-soluble aromatic and nitrogen constituents of apple and pear in the host-parasite relationships of venturia species, Nature, vol.16, pp.690-691, 1954. ,
Latent Period and Infection Efficiency of Puccinia recondita f. sp. tritici Populations Isolated from Different Cultivars, Phytopathology, vol.81, pp.435-439, 1991. ,
Spatial scale of local adaptation in a plant-pathogen metapopulation, Journal of Evolutionary Biology, vol.18, pp.930-938, 2005. ,
Some Effects of Temperature and Nitrogen Supply on Wheat Powdery Mildew, Annals of Applied Biology, vol.40, pp.312-322, 1953. ,
Effects of Nutrition on the Incidence of Barley Powdery Mildew, Plant Pathology, vol.11, pp.133-136, 1962. ,
Spatial evolutionary epidemiology of spreading epidemics, Proceedings of the Royal Society B: Biological Sciences, vol.283, 2016. ,
URL : https://hal.archives-ouvertes.fr/hal-02122259
Expression of adult resistance to stripe rust at different growth stages of wheat, Plant Disease, pp.375-379, 1996. ,
Nitrogen uptake, assimilation and remobilization in plants: Challenges for sustainable and productive agriculture, Annals of Botany, vol.105, pp.1141-1157, 2010. ,
URL : https://hal.archives-ouvertes.fr/hal-01203920
Costs of Defense and a Test of the Carbon-Nutrient Balance and Growth-Differentiation Balance Hypotheses for Two Co-Occurring Classes of Plant Defense, PLoS ONE, vol.7, 2012. ,
Effect of nitrogenous fertilizer on biochemical processes that could affect lesion size of rice blast, Phytopathology, vol.63, pp.1202-1203, 1973. ,
The effect of ample nitrogen fertilizer on cell wall materials and its significance to rice blast disease, Annual Phytopathological Society of Japan, vol.41, pp.56-61, 1975. ,
Pathogen population genetics, evolutionary potential, and durable resistance, Annual Review of Phytopathology, vol.40, pp.349-379, 2002. ,
Landscape Epidemiology of Emerging Infectious Diseases in Natural and Human-Altered Ecosystems, Annual Review of Phytopathology, vol.50, pp.379-402, 2012. ,
Landscape heterogeneity and disease spread: Experimental approaches with a plant pathogen, Ecological Applications, vol.21, pp.321-328, 2011. ,
Moving nitrogen to the centre of plant defence against pathogens, Annals of Botany, vol.119, pp.703-709, 2017. ,
Edge effects in fragmented forests-implications for conservation, Trends in Ecology & Evolution, vol.10, pp.58-62, 1995. ,
Irrigation strategy, nitrogen application and fungicide control in winter wheat on a sandy soil. I. Yield, yield components and nitrogen uptake, Journal of Agricultural Science, vol.134, pp.1-11, 2000. ,
Pathogen population dynamics in agricultural landscapes: The Ddal modelling framework, Genetics and Evolution, vol.27, pp.509-520, 2014. ,
Crop pathogen emergence and evolution in agro-ecological landscapes, Evolutionary Applications, vol.8, pp.385-402, 2015. ,
Shared influence of pathogen and host genetics on a trade-off between latent period and spore production capacity in the wheat pathogen, Puccinia triticina, Evolutionary Applications, vol.6, pp.303-312, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01001587
Expression of adult plant resistance and its effect on the development of Puccinia striiformis f.sp. tritici in some Australian wheat cultivars, Plant Pathology, vol.38, pp.200-208, 1989. ,
Local population differentiation for compatibility in an annual legume and its host-specific fungal pathogen, Evolution, vol.39, pp.713-723, 1985. ,
Infection structures of biotrophic and hemibiotrophic fungal plant pathogens, Molecular Plant Pathology, vol.2, pp.101-108, 2001. ,
Prevalence and distribution of common barberry, the alternate host of Puccinia graminis,in Minnesota, Plant Dis, vol.89, pp.159-163, 2005. ,
Landscape epidemiology of plant diseases, Journal of The Royal Society Interface, vol.4, pp.963-972, 2007. ,
Live where you thrive: joint evolution of habitat choice and local adaptation fa-cilitates specialization and promotes diversity, American Naturalist, vol.174, pp.141-169, 2009. ,
Sudden oak death: endangering California and Oregon forest ecosystems, Frontiers in Ecology and the ?, vol.1, pp.197-204, 2003. ,
Quantification of the effects of Septoria tritici blotch on wheat leaf gas exchange with respect to lesion age, leaf number, and leaf nitrogen status, In Journal of Experimental Botany, pp.225-234, 2006. ,
Coupling a 3D virtual wheat (Triticum aestivum) plant model with a Septoria tritici epidemic model (Septo3D): A new approach to investigate plant-pathogen interactions linked to canopy architecture, Functional Plant Biology, vol.35, pp.997-1013, 2008. ,
URL : https://hal.archives-ouvertes.fr/hal-01192058
A plant-pathogen model reveals how plant architecture and foliar senescence impact the race between wheat growth and Zymoseptoria tritici epidemics, Annals of Botany, 2017. ,
Short-distance dispersal of wheat rust spores, Agronomie, vol.20, issue.7, pp.757-767, 2000. ,
URL : https://hal.archives-ouvertes.fr/hal-00886080
The Effect of Nitrogen Fertilization on the Expression of Slow-Mildewing Resistance in Knox Wheat, Phytopathology, vol.77, pp.1051-1056, 1977. ,
Effects of temperature, leaf wetness and cultivar on the latent period of Mycosphaerella graminicola on winter wheat, Plant Pathology, vol.39, pp.255-268, 1990. ,
Functional-structural plant models: A growing paradigm for plant studies, Annals of Botany, vol.114, pp.599-603, 2014. ,
Wheat Powdery Mildew Investigations, Annals of Applied Biology, vol.37, pp.570-583, 1950. ,
Lack of evidence for local adaptation to individual plant clones or site by a mobile specialist herbivore, Oecologia, vol.110, pp.77-85, 1997. ,
Assessment of quantitative traits of aggressiveness in Mycosphaerella graminicola on adult wheat plants, Plant Pathology, vol.62, pp.1330-1341, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01004711
Tradeoff between intra-and interannual scales in the evolution of aggressiveness in a local plant pathogen population, 2017. ,
Apical leaf necrosis and leaf nitrogen dynamics in diseased leaves: A model study, Plant Pathology, vol.56, pp.424-436, 2007. ,
URL : https://hal.archives-ouvertes.fr/hal-01191925
Apical leaf necrosis as a defence mechanism against pathogen attack: Effects of high nutrient availability on onset and rate of necrosis, Plant Pathology, vol.57, pp.1009-1016, 2008. ,
High levels of auto-infection in plant pathogens favour short latent periods: A theoretical approach, Evolutionary Ecology, vol.27, pp.409-428, 2013. ,
URL : https://hal.archives-ouvertes.fr/hal-01190640
The Impact of Crop Rotation and N Fertilization on the Leaf Area Index , Leaf Disease and Yield of Winter Wheat, International Scholarly and Scientific Research & Innovation, vol.7, pp.1031-1034, 2013. ,
Functional-structural plant modelling: A new versatile tool in crop science, Journal of Experimental Botany, p.61, 2010. ,
URL : https://hal.archives-ouvertes.fr/hal-01132296
Vertical Distribution of Nitrogen in Different Layers of Leaf and Stem and Their Relationship with Grain Quality of Winter Wheat, Journal of Plant Nutrition, vol.28, pp.73-91, 2005. ,
Host defence in a developmental context, Molecular Plant Pathology, vol.6, pp.347-360, 2005. ,
On the political economy of plant diseases epidemics -Capita selecta in historical epidemiology, pp.39-119, 2008. ,
Local adaptation and effect of host genotype on the rate of pathogen evolution: An experimental test in a plant pathosystem, Journal of Evolutionary Biology, vol.15, pp.634-647, 2002. ,
Achieving sustainable plant disease management through evolutionary principles, Trends in Plant Science, vol.19, pp.570-575, 2014. ,
Playing on a Pathogen's Weakness: Using Evolution to Guide Sustainable Plant Disease Control Strategies, Annual Review of Phytopathology, vol.53, pp.19-43, 2015. ,
URL : https://hal.archives-ouvertes.fr/hal-01536434