L. Devos, F. Klee, M. Blin, and S. Rétaux, DECA group, NeuroPSI, CNRS UMR 9197, Université Paris-Saclay Key words : FoxG1, FoxD1, Vax2,Tbx5a, Pax2a, Bhlhe40, retina quadrants, retinal pigmented epithelium

P. Affaticati, Identification of the optic recess region as a morphogenetic entity in the zebrafish forebrain, Scientific Reports, vol.5, p.8738, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01142552

D. Ail and M. Perron, Retinal Degeneration and Regeneration-Lessons From Fishes and Amphibians, Current pathobiology reports, vol.5, issue.1, pp.67-78, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01571628

D. Alsop and M. Vijayan, The zebrafish stress axis: molecular fallout from the teleost-specific genome duplication event, General and comparative endocrinology, vol.161, issue.1, pp.62-68, 2009.

A. Alunni, Developmental mechanisms for retinal degeneration in the blind cavefishAstyanax mexicanus, The Journal of Comparative Neurology, vol.505, issue.2, pp.221-233, 2007.

Y. Alvarez, Genetic determinants of hyaloid and retinal vasculature in zebrafish, BMC Developmental Biology, vol.7, issue.1, p.114, 2007.

M. Asai-coakwell, GDF6, a Novel Locus for a Spectrum of Ocular Developmental Anomalies, The American Journal of Human Genetics, vol.80, issue.2, pp.306-315, 2007.

A. C. Aspiras, Melanocortin 4 receptor mutations contribute to the adaptation of cavefish to nutrient-poor conditions, Proceedings of the National Academy of Sciences of the United States of America, vol.112, pp.9668-73, 2015.

J. C. Avise and R. K. Selander, EVOLUTIONARY GENETICS OF CAVE-DWELLING FISHES OF THE GENUS ASTYANAX. Evolution; international journal of organic evolution, vol.26, pp.1-19, 1972.

A. M. Barbieri, A homeobox gene, vax2, controls the patterning of the eye dorsoventral axis, Proceedings of the National Academy of Sciences, vol.96, issue.19, pp.10729-10734, 1999.

A. M. Barbieri, Vax2 inactivation in mouse determines alteration of the eye dorsal-ventral axis, misrouting of the optic fibres and eye coloboma, Development, issue.3, p.129, 2002.

V. G. Barsagade, Reproductive phase-related variations in cocaine-and amphetamine-regulated transcript (CART) in the olfactory system, forebrain, and pituitary of the female catfish, Clarias batrachus, vol.518, pp.2503-2527, 2010.

A. Beale, Circadian rhythms in Mexican blind cavefish Astyanax mexicanus in the lab and in the field, Nature Communications, vol.4, p.2769, 2013.

A. D. Beale and D. Whitmore, Chapter 16-Daily Rhythms in a Timeless Environment: Circadian Clocks in Astyanax mexicanus, Biology and Evolution of the Mexican Cavefish, pp.309-333, 2016.

L. Beccari, R. Marco-ferreres, and P. Bovolenta, The logic of gene regulatory networks in early vertebrate forebrain patterning, Mechanisms of Development, vol.130, issue.2-3, pp.95-111, 2013.

C. G. Becker, R. L. Meyer, and T. Becker, Gradients of ephrin-A2 and ephrin-A5b mRNA during retinotopic regeneration of the optic projection in adult zebrafish, The Journal of comparative neurology, vol.427, issue.3, pp.469-83, 2000.

J. L. Bedont, E. A. Newman, and S. Blackshaw, Patterning, specification, and differentiation in the developing hypothalamus, Wiley Interdisciplinary Reviews: Developmental Biology, vol.4, issue.5, pp.445-468, 2015.

H. Bielen and C. Houart, BMP Signaling Protects Telencephalic Fate by Repressing Eye Identity and Its Cxcr4-Dependent Morphogenesis, Developmental Cell, vol.23, issue.4, pp.812-822, 2012.

R. Bla?ek, M. Pola?ik, and M. Reichard, Rapid growth, early maturation and short generation time in African annual fishes, EvoDevo, vol.4, issue.1, p.24, 2013.

H. Bleckmann and R. Zelick, Lateral line system of fish, Integrative Zoology, vol.4, issue.1, pp.13-25, 2009.

M. Blin, Developmental evolution and developmental plasticity of the olfactory epithelium and olfactory skills in Mexican cavefish, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01828439

M. Bradic, Gene flow and population structure in the Mexican blind cavefish complex (Astyanax mexicanus), BMC evolutionary biology, vol.12, issue.1, p.9, 2012.

C. Brennan, Two Eph receptor tyrosine kinase ligands control axon growth and may be involved in the creation of the retinotectal map in the zebrafish, Development, issue.3, p.124, 1997.

A. Bulfone, Spatially restricted expression of Dlx-1, Dlx-2 (Tes-1), Gbx-2, and Wnt-3 in the embryonic day 12.5 mouse forebrain defines potential transverse and longitudinal segmental boundaries, The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.13, issue.7, pp.3155-72, 1993.

Z. Cai, Deficient FGF signaling causes optic nerve dysgenesis and ocular coloboma, Development, issue.13, pp.2711-2734, 2013.

F. Cavodeassi, Dynamic Tissue Rearrangements during Vertebrate Eye Morphogenesis: Insights from Fish Models, Journal of Developmental Biology, vol.6, issue.1, p.4, 2018.

F. Cavodeassi, Early Stages of Zebrafish Eye Formation Require the Coordinated Activity of Wnt11, Fz5, and the Wnt/?-Catenin Pathway, Neuron, vol.47, issue.1, pp.43-56, 2005.

P. B. Cechmanek and S. Mcfarlane, Retinal pigment epithelium expansion around the neural retina occurs in two separate phases with distinct mechanisms, Developmental Dynamics, vol.246, issue.8, pp.598-609, 2017.

J. M. Cerdá-reverter, Fish melanocortin system, European journal of pharmacology, vol.660, issue.1, pp.53-60, 2011.

R. Chakraborty and M. Nei, Dynamics of gene differentiation between incompletely isolated populations of unequal sizes, Theoretical population biology, vol.5, issue.3, pp.460-469, 1974.

J. Chan, Morphogenesis of Prechordal Plate and Notochord Requires Intact Eph/Ephrin B signaling, vol.211, p.234, 2001.

J. C. Chuang and P. A. Raymond, Embryonic origin of the eyes in teleost fish, BioEssays, vol.24, issue.6, pp.519-529, 2002.

J. Clarke, Role of polarized cell divisions in zebrafish neural tube formation, Current Opinion in Neurobiology, vol.19, issue.2, pp.134-138, 2009.

R. Cote, In Cyclic Nucleotide Phosphodiesterases in Health and Disease, 2006.

R. Dahm, Development and adult morphology of the eye lens in the zebrafish, Experimental Eye Research, vol.85, issue.1, pp.74-89, 2007.

C. Danesin, Integration of Telencephalic Wnt and Hedgehog Signaling Center Activities by Foxg1, Developmental Cell, vol.16, issue.4, pp.576-587, 2009.

C. Danesin and C. Houart, A Fox stops the Wnt: implications for forebrain development and diseases, Current Opinion in Genetics & Development, vol.22, issue.4, pp.323-330, 2012.

R. Deangelis, Opposite effects of nonapeptide antagonists on paternal behavior in the teleost fish Amphiprion ocellaris, Hormones and Behavior, vol.90, pp.113-119, 2017.

E. R. Duboué and A. C. Keene, Chapter 15-Investigating the Evolution of Sleep in the Mexican Cavefish, Biology and Evolution of the Mexican Cavefish, pp.291-308, 2016.

E. R. Duboué, A. C. Keene, and R. L. Borowsky, Evolutionary convergence on sleep loss in cavefish populations, Current biology : CB, vol.21, issue.8, pp.671-677, 2011.

S. S. Easter and G. N. Nicola, The Development of Vision in the Zebrafish (Danio rerio), Developmental Biology, vol.180, issue.2, pp.646-663, 1996.

J. L. Eaton, B. Holmqvist, and E. Glasgow, Ontogeny of vasotocin-expressing cells in zebrafish: selective requirement for the transcriptional regulators orthopedia and single-minded 1 in the preoptic area, vol.237, pp.995-1005, 2008.

I. Elbaz, Genetic ablation of hypocretin neurons alters behavioral state transitions in zebrafish, The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.32, issue.37, pp.12961-72, 2012.

Y. Elipot, A mutation in the enzyme monoamine oxidase explains part of the Astyanax cavefish behavioural syndrome, Nature communications, vol.5, p.3647, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01055304

Y. Elipot, Evolutionary shift from fighting to foraging in blind cavefish through changes in the serotonin network, Current biology : CB, vol.23, issue.1, pp.1-10, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00781215

W. R. Elliott, Chapter 3-Cave Biodiversity and Ecology of the Sierra de El Abra Region, Biology and Evolution of the Mexican Cavefish, pp.59-76, 2016.

S. J. England, A dynamic fate map of the forebrain shows how vertebrate eyes form and explains two causes of cyclopia, Development, issue.23, pp.4613-4620, 2006.

L. Espinasa, Contrasting feeding habits of post-larval and adult Astyanax cavefish, Subterranean Biology, vol.21, pp.1-17, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01432027

L. Espinasa, Y. Yamamoto, and W. R. Jeffery, Non-optical releasers for aggressive behavior in blind and blinded, Behavioural Processes, vol.70, pp.144-148, 2005.

A. J. Fischer, J. L. Bosse, and H. M. El-hodiri, The ciliary marginal zone (CMZ) in development and regeneration of the vertebrate eye, Experimental Eye Research, vol.116, pp.199-204, 2013.

C. R. French, Gdf6a is required for the initiation of dorsal-ventral retinal patterning and lens development, Developmental Biology, vol.333, issue.1, pp.37-47, 2009.

C. Fulwiler, Retinal patterning in the zebrafish mutant cyclops, The Journal of comparative neurology, vol.381, issue.4, pp.449-60, 1997.

J. Fumey, Evidence for late Pleistocene origin of Astyanax mexicanus cavefish, BMC Evolutionary Biology, vol.18, issue.1, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01828523

A. I. Furness, K. Lee, and D. N. Reznick, Adaptation in a variable environment: Phenotypic plasticity and bethedging during egg diapause and hatching in an annual killifish. Evolution; international journal of organic evolution, vol.69, pp.1461-1475, 2015.

E. García-calero, Early mammillary pouch specification in the course of prechordal ventralization of the forebrain tegmentum, Developmental Biology, vol.320, issue.2, pp.366-377, 2008.

T. Genade, Annual fishes of the genus Nothobranchius as a model system for aging research, Aging Cell, vol.4, issue.5, pp.223-233, 2005.

M. Gesto, Arginine vasotocin treatment induces a stress response and exerts a potent anorexigenic effect in rainbow trout, Oncorhynchus mykiss, Journal of neuroendocrinology, vol.26, issue.2, pp.89-99, 2014.

G. Gestri, Cell Behaviors during Closure of the Choroid Fissure in the Developing Eye, Frontiers in Cellular Neuroscience, vol.12, p.42, 2018.

G. Gestri, B. A. Link, and S. C. Neuhauss, The visual system of zebrafish and its use to model human ocular diseases, Developmental neurobiology, vol.72, issue.3, pp.302-329, 2012.

N. J. Gosse and H. Baier, An essential role for Radar (Gdf6a) in inducing dorsal fate in the zebrafish retina, Proceedings of the National Academy of Sciences of the United States of America, vol.106, pp.2236-2277, 2009.

E. Gramage, J. Li, and P. Hitchcock, The expression and function of midkine in the vertebrate retina, British Journal of Pharmacology, vol.171, issue.4, pp.913-923, 2014.

C. Y. Gregory-evans, Ocular coloboma: a reassessment in the age of molecular neuroscience, Journal of Medical Genetics, vol.41, issue.12, pp.881-891, 2004.

T. M. Greiling and J. I. Clark, Early lens development in the zebrafish: A three-dimensional time-lapse analysis, Developmental Dynamics, vol.238, issue.9, pp.2254-2265, 2009.

H. Gunter and A. Meyer, Trade-offs in cavefish sensory capacity, BMC Biology, vol.11, issue.1, p.5, 2013.

M. Hallonet, Vax1, a novel homeobox-containing gene, directs development of the basal forebrain and visual system, Genes & development, vol.13, issue.23, pp.3106-3120, 1999.

A. Hartsock, In vivo analysis of hyaloid vasculature morphogenesis in zebrafish: A role for the lens in maturation and maintenance of the hyaloid, Developmental Biology, vol.394, issue.2, pp.327-339, 2014.

T. Hashiura, Live imaging of primary ocular vasculature formation in zebrafish, PloS one, vol.12, issue.4, p.176456, 2017.

I. Hasunuma, Roles of arginine vasotocin receptors in the brain and pituitary of submammalian vertebrates, International review of cell and molecular biology, vol.304, pp.191-225, 2013.

S. Heermann, Eye morphogenesis driven by epithelial flow into the optic cup facilitated by modulation of bone morphogenetic protein, 2015.

C. Heisenberg and C. Nüsslein-volhard, The Function ofsilberblickin the Positioning of the Eye Anlage in the Zebrafish Embryo, Developmental Biology, vol.184, issue.1, pp.85-94, 1997.

U. Herget, Molecular neuroanatomy and chemoarchitecture of the neurosecretory preoptichypothalamic area in zebrafish larvae, Journal of Comparative Neurology, vol.522, issue.7, pp.1542-1564, 2014.

U. Herget and S. Ryu, Coexpression analysis of nine neuropeptides in the neurosecretory preoptic area of larval zebrafish, Frontiers in neuroanatomy, vol.9, issue.2, 2015.

M. Hernández-bejarano, Opposing Shh and Fgf signals initiate nasotemporal patterning of the zebrafish retina, Development, vol.142, issue.22, pp.3933-3942, 2015.

E. Herrera, Foxd1 is required for proper formation of the optic chiasm, Development, issue.22, pp.5727-5766, 2004.

H. Hinaux, Lens apoptosis in the Astyanax blind cavefish is not triggered by its small size or defects in morphogenesis, PLOS ONE, vol.12, issue.2, p.172302, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01481456

H. Hinaux, Lens defects in Astyanax mexicanus Cavefish: evolution of crystallins and a role for alphaA-crystallin, Developmental neurobiology, vol.75, issue.5, pp.505-526, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01142469

H. Hinaux, Sensory evolution in blind cavefish is driven by early embryonic events during gastrulation and neurulation, Development, issue.23, pp.4521-4532, 2016.
DOI : 10.1242/dev.141291

URL : https://hal.archives-ouvertes.fr/hal-01407417

V. L. Holly, Sfrp1a and Sfrp5 function as positive regulators of Wnt and BMP signaling during early retinal development, Developmental Biology, vol.388, issue.2, pp.192-204, 2014.

E. J. Horstick, Search strategy is regulated by somatostatin signaling and deep brain photoreceptors in zebrafish, BMC Biology, vol.15, issue.1, p.4, 2017.
DOI : 10.1186/s12915-016-0346-2

URL : https://bmcbiol.biomedcentral.com/track/pdf/10.1186/s12915-016-0346-2

C. Houart, Establishment of the Telencephalon during Gastrulation by Local Antagonism of Wnt Signaling, Neuron, vol.35, issue.2, pp.255-265, 2002.

C. Houart, M. Westerfield, and S. W. Wilson, A small population of anterior cells patterns the forebrain during zebrafish gastrulation, Nature, vol.391, issue.6669, pp.788-92, 1998.

K. Hüppop, Food-finding ability in cave fish (Astyanax fasciatus), International Journal of Speleology, vol.16, issue.1, pp.59-66, 1987.

K. Hüppop, How do cave animals cope with the food scarcity in caves, p.791, 2001.

K. Ivanovitch, F. Cavodeassi, and S. W. Wilson, Precocious acquisition of neuroepithelial character in the eye field underlies the onset of eye morphogenesis, Developmental cell, vol.27, issue.3, pp.293-305, 2013.

J. Jaggard, The lateral line confers evolutionarily derived sleep loss in the Mexican cavefish, The Journal of experimental biology, vol.220, pp.284-293, 2017.

J. B. Jaggard, Hypocretin underlies the evolution of sleep loss in the Mexican cavefish, vol.7, p.32637, 2018.

A. James, The hyaloid vasculature facilitates basement membrane breakdown during choroid fissure closure in the zebrafish eye, Developmental Biology, vol.419, issue.2, pp.262-272, 2016.

W. Jeffery and D. Martasian, Evolution of Eye Regression in the Cavefish Astyanax : Apoptosis and the Pax, 1998.

, Gene. American Zoologist, vol.38, issue.4, pp.685-696, 2018.

W. R. Jeffery, Regressive Evolution in Astyanax Cavefish, Annual Review of Genetics, vol.43, issue.1, pp.25-47, 2009.

W. R. Jeffery, A. G. Strickler, and Y. Yamamoto, To See or Not to See: Evolution of Eye Degeneration in Mexican Blind Cavefish, Integrative and Comparative Biology, vol.43, issue.4, pp.531-541, 2003.

N. Kagawa, Social rank-dependent expression of arginine vasotocin in distinct preoptic regions in male Oryzias latipes, Journal of fish biology, vol.82, issue.1, pp.354-63, 2013.

M. Kapsimali, Inhibition of Wnt/Axin/-catenin pathway activity promotes ventral CNS midline tissue to adopt hypothalamic rather than floorplate identity, Development, vol.131, issue.23, pp.5923-5933, 2004.
DOI : 10.1242/dev.01453

URL : http://dev.biologists.org/content/131/23/5923.full.pdf

R. Kaufman, Development and origins of zebrafish ocular vasculature, BMC developmental biology, vol.15, p.18, 2015.

E. M. Kita, E. K. Scott, and G. J. Goodhill, Topographic wiring of the retinotectal connection in zebrafish, Developmental Neurobiology, vol.75, issue.6, pp.542-556, 2015.

K. Koshiba-takeuchi, Tbx5 and the retinotectum projection, Science, issue.5450, pp.134-141, 2000.

M. Kottelat, Draconectes narinosus, a new genus and species of cave fish from an island of Halong Bay, Vietnam (Teleostei: Nemacheilidae), vol.119, pp.341-349, 2012.

J. E. Kowalko, N. Rohner, and T. A. Linden, Convergence in feeding posture occurs through different genetic loci in independently evolved cave populations of Astyanax mexicanus, Proceedings of the National Academy of Sciences of the United States of America, vol.110, pp.16933-16941, 2013.

J. E. Kowalko, N. Rohner, and S. B. Rompani, Loss of schooling behavior in cavefish through sightdependent and sight-independent mechanisms, Current biology : CB, vol.23, issue.19, pp.1874-83, 2013.

R. Kruse-bend, Extraocular ectoderm triggers dorsal retinal fate during optic vesicle evagination in zebrafish, Developmental Biology, vol.371, issue.1, pp.57-65, 2012.

K. M. Kwan, A complex choreography of cell movements shapes the vertebrate eye, Development, vol.139, issue.2, pp.359-72, 2012.

T. G. Langecker, H. Schmale, and H. Wilkens, Transcription of the opsin gene in degenerate eyes of cavedwelling Astyanax fasciatus (Teleostei, Characidae) and of its conspecific epigean ancestor during early ontogeny, Cell and Tissue Research, vol.273, issue.1, pp.183-192, 1993.

J. Lee, Zebrafish blowout provides genetic evidence for Patched1-mediated negative regulation of Hedgehog signaling within the proximal optic vesicle of the vertebrate eye, Developmental biology, vol.319, issue.1, pp.10-22, 2008.

X. Lin, Brain regulation of feeding behavior and food intake in fish, Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, vol.126, issue.4, pp.415-434, 2000.

C. A. Lowry and F. L. Moore, Regulation of behavioral responses by corticotropin-releasing factor, General and comparative endocrinology, vol.146, issue.1, pp.19-27, 2006.

G. Lupo, Dorsoventral patterning of the Xenopus eye: a collaboration of Retinoid, Hedgehog and FGF receptor signaling, Development, issue.7, pp.1737-1785, 2005.

G. Lupo, Retinoic acid receptor signaling regulates choroid fissure closure through independent mechanisms in the ventral optic cup and periocular mesenchyme, Proceedings of the National Academy of Sciences, vol.108, issue.21, pp.8698-8703, 2011.

R. Macdonald, Midline signalling is required for Pax gene regulation and patterning of the eyes, Development, issue.10, pp.3267-78, 1995.

R. Macdonald, The Pax protein Noi is required for commissural axon pathway formation in the rostral forebrain, Development, issue.12, p.124, 1997.

Y. Machluf, A. Gutnick, and G. Levkowitz, Development of the zebrafish hypothalamus, Annals of the New York Academy of Sciences, vol.1220, issue.1, pp.93-105, 2011.

R. Maeda, Ontogeny of the Saccus Vasculosus, a Seasonal Sensor in Fish, Endocrinology, vol.156, issue.11, pp.4238-4243, 2015.

M. J. Mancebo, Hypothalamic neuropeptide Y (NPY) gene expression is not affected by central serotonin in the rainbow trout (Oncorhynchus mykiss). Comparative biochemistry and physiology. Part A, Molecular & integrative physiology, vol.166, pp.186-90, 2013.

J. Martinez-morales, Differentiation of the vertebrate retina is coordinated by an FGF signaling center, Developmental cell, vol.8, issue.4, pp.565-74, 2005.

J. Martinez-morales, F. Cavodeassi, and P. Bovolenta, Coordinated Morphogenetic Mechanisms Shape the Vertebrate Eye, Frontiers in Neuroscience, vol.11, p.721, 2017.

J. R. Martinez-morales and J. Wittbrodt, Shaping the vertebrate eye, Current Opinion in Genetics & Development, vol.19, issue.5, pp.511-517, 2009.

J. A. Martos-sitcha, Vasotocinergic and isotocinergic systems in the gilthead sea bream (Sparus aurata): an osmoregulatory story, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology, vol.166, issue.4, pp.571-81, 2013.

I. Masai, Midline Signals Regulate Retinal Neurogenesis in Zebrafish, Neuron, vol.27, issue.2, pp.251-263, 2000.

I. Masai, N-cadherin mediates retinal lamination, maintenance of forebrain compartments and patterning of retinal neurites, Development, issue.11, pp.2479-94, 2003.

J. Mathieu, Distinct and cooperative roles for Nodal and Hedgehog signals during hypothalamic development, Development, issue.13, pp.3055-65, 2002.
URL : https://hal.archives-ouvertes.fr/hal-02119448

K. Matsuda, Neuroendocrine control of feeding behavior and psychomotor activity by neuropeptideY in fish, Neuropeptides, vol.46, issue.6, pp.275-83, 2012.

J. A. Mennigen, The nonapeptide isotocin in goldfish: Evidence for serotonergic regulation and functional roles in the control of food intake and pituitary hormone release, General and Comparative Endocrinology, vol.254, pp.38-49, 2017.

J. A. Mennigen, Waterborne fluoxetine disrupts feeding and energy metabolism in the goldfish Carassius auratus, Aquatic toxicology, vol.100, issue.1, pp.128-165, 2010.

A. Menuet, Expanded expression of Sonic Hedgehog in Astyanax cavefish: multiple consequences on forebrain development and evolution, Development, vol.134, issue.5, pp.845-55, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00150478

A. Miyake, Fgf19 regulated by Hh signaling is required for zebrafish forebrain development, Developmental Biology, vol.288, issue.1, pp.259-275, 2005.

D. Moran, R. Softley, and E. J. Warrant, The energetic cost of vision and the evolution of eyeless Mexican cavefish, Science Advances, vol.1, issue.8, pp.1500363-1500363, 2015.

T. Nakamachi, Regulation by orexin of feeding behaviour and locomotor activity in the goldfish, Journal of neuroendocrinology, vol.18, issue.4, pp.290-297, 2006.

Y. Nakane, The saccus vasculosus of fish is a sensor of seasonal changes in day length, Nature Communications, vol.4, p.2108, 2013.

M. Nicolás-pérez, Analysis of cellular behavior and cytoskeletal dynamics reveal a constriction mechanism driving optic cup morphogenesis. eLife, 5, pp.61-79, 2016.

G. L. Owens, In the four-eyed fish (Anableps anableps), the regions of the retina exposed to aquatic and aerial light do not express the same set of opsin genes, Biology letters, vol.8, issue.1, pp.86-95, 2012.

N. De-pedro, Inhibitory effect of serotonin on feeding behavior in goldfish: involvement of CRF, Peptides, vol.19, issue.3, pp.505-516, 1998.

L. N. Perez, Eye development in the four-eyed fish Anableps anableps: cranial and retinal adaptations to simultaneous aerial and aquatic vision, Proceedings. Biological sciences, vol.284, p.20170157, 1852.

J. J. Pérez-maceira, M. J. Mancebo, and M. Aldegunde, The involvement of 5-HT-like receptors in the regulation of food intake in rainbow trout (Oncorhynchus mykiss). Comparative biochemistry and physiology, Toxicology & pharmacology : CBP, vol.161, pp.1-6, 2014.

M. Perron and W. A. Harris, Retinal stem cells in vertebrates, BioEssays, vol.22, issue.8, pp.685-688, 2000.
URL : https://hal.archives-ouvertes.fr/hal-00740530

A. Picker, Dynamic Coupling of Pattern Formation and Morphogenesis in the Developing Vertebrate Retina, PLoS Biology, vol.7, issue.10, 2009.

A. Picker and M. Brand, Fgf signals from a novel signaling center determine axial patterning of the prospective neural retina, Development, issue.22, pp.4951-62, 2005.

L. Pillai-kastoori, Sox11 Is Required to Maintain Proper Levels of Hedgehog Signaling during Vertebrate Ocular, PLoS Genetics, vol.10, issue.7, p.1004491, 2014.
DOI : 10.1371/journal.pgen.1004491

URL : https://journals.plos.org/plosgenetics/article/file?id=10.1371/journal.pgen.1004491&type=printable

H. Pogoda and M. Hammerschmidt, Molecular genetics of pituitary development in zebrafish, Seminars in Cell & Developmental Biology, vol.18, issue.4, pp.543-558, 2007.

K. Pottin, H. Hinaux, and S. Rétaux, Restoring eye size in Astyanax mexicanus blind cavefish embryos through modulation of the Shh and Fgf8 forebrain organising centres, Development, issue.12, pp.2467-76, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00637188

F. E. Poulain, Analyzing Retinal Axon Guidance in Zebrafish, Methods in Cell Biology, vol.100, pp.2-26, 2010.
DOI : 10.1016/b978-0-12-384892-5.00001-3

D. A. Prober, Hypocretin/orexin overexpression induces an insomnia-like phenotype in zebrafish, The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.26, issue.51, pp.13400-13410, 2006.
DOI : 10.1523/jneurosci.4332-06.2006

URL : http://www.jneurosci.org/content/26/51/13400.full.pdf

M. Protas, Regressive evolution in the Mexican cave tetra, Astyanax mexicanus. Current biology : CB, vol.17, issue.5, pp.452-456, 2007.
DOI : 10.1016/j.cub.2007.01.051

URL : https://doi.org/10.1016/j.cub.2007.01.051

M. E. Protas, Genetic analysis of cavefish reveals molecular convergence in the evolution of albinism, Nature Genetics, vol.38, issue.1, pp.107-111, 2006.

L. Puelles and J. L. Rubenstein, A new scenario of hypothalamic organization: rationale of new hypotheses introduced in the updated prosomeric model, Frontiers in Neuroanatomy, vol.9, p.27, 2015.

M. Rembold, Individual cell migration serves as the driving force for optic vesicle evagination, Science, issue.5790, pp.1130-1134, 2006.
DOI : 10.1126/science.1127144

S. Rétaux and D. Casane, Evolution of eye development in the darkness of caves: adaptation, drift, or both? EvoDevo, vol.4, p.26, 2013.

S. Retaux and W. A. Harris, Engrailed and retinotectal topography, Trends in Neurosciences, vol.19, issue.12, pp.542-546, 1996.
DOI : 10.1016/s0166-2236(96)10062-x

M. R. Riddle, Insulin resistance in cavefish as an adaptation to a nutrient-limited environment, Nature, vol.555, issue.7698, pp.647-651, 2018.

A. Rodríguez-illamola, Diurnal rhythms in hypothalamic/pituitary AVT synthesis and secretion in rainbow trout: evidence for a circadian regulation, General and comparative endocrinology, vol.170, issue.3, pp.541-550, 2011.

N. Rohner, Chapter 7-Selection Through Standing Genetic Variation, Biology and Evolution of the Mexican Cavefish, pp.137-152, 2016.
DOI : 10.1016/b978-0-12-802148-4.00007-4

N. Rohner, Cryptic variation in morphological evolution: HSP90 as a capacitor for loss of eyes in cavefish, Science, vol.342, issue.6164, pp.1372-1377, 2013.

A. Romero, One eye but no vision: Cave fish with induced eyes do not respond to light, Journal of Experimental Zoology, vol.300, issue.1, pp.72-79, 2003.
DOI : 10.1002/jez.b.47

S. L. Rutherford and S. Lindquist, Hsp90 as a capacitor for morphological evolution, Nature, vol.396, issue.6709, pp.336-342, 1998.
DOI : 10.1038/24550

M. Saint-geniez and P. A. &-d'amore, Development and pathology of the hyaloid, choroidal and retinal vasculature, The International journal of developmental biology, vol.48, issue.8-9, pp.1045-58, 2004.
DOI : 10.1387/ijdb.041895ms

T. Sakurai, Roles of orexins in the regulation of body weight homeostasis, Obesity research & clinical practice, vol.8, issue.5, pp.414-434, 2014.

H. Sakuta, Role of Bone Morphogenic Protein 2 in Retinal Patterning and Retinotectal Projection, Journal of Neuroscience, issue.42, p.26, 2006.

N. A. Sanek, Zebrafish zic2a patterns the forebrain through modulation of Hedgehog-activated gene expression, Development, issue.22, pp.3791-800, 2009.

C. Schemmel, Studies on the Genetics of Feeding Behaviour in the Cave Fish Astyanax mexicanus f. anoptichthys. Zeitschrift für Tierpsychologie, vol.53, pp.9-22, 1980.

D. Schulte, Misexpression of the Emx-Related Homeobox Genes cVax and mVax2 Ventralizes the Retina and Perturbs the Retinotectal Map, Neuron, vol.24, issue.3, pp.541-553, 1999.

I. Sedykh, Zebrafish zic2 controls formation of periocular neural crest and choroid fissure morphogenesis, Developmental Biology, vol.429, issue.1, pp.92-104, 2017.

K. M. Sefc, Brood mixing and reduced polyandry in a maternally mouthbrooding cichlid with elevated among-breeder relatedness, Molecular Ecology, vol.21, issue.11, pp.2805-2815, 2012.

R. Sehgal, Ectopic Pax2 expression in chick ventral optic cup phenocopies loss of Pax2 expression, Developmental biology, vol.319, issue.1, pp.23-33, 2008.

A. Seth, belladonna/(Ihx2) is required for neural patterning and midline axon guidance in the zebrafish forebrain, Development, vol.133, issue.4, pp.725-760, 2006.

S. Shanmugalingam, Ace/Fgf8 is required for forebrain commissure formation and patterning of the telencephalon, Development, issue.12, pp.2549-61, 2000.

M. A. Sheridan and A. L. Hagemeister, Somatostatin and somatostatin receptors in fish growth, General and Comparative Endocrinology, vol.167, issue.3, pp.360-365, 2010.

J. Sidhaye and C. Norden, Concerted action of neuroepithelial basal shrinkage and active epithelial migration ensures efficient optic cup morphogenesis. eLife, 6, p.e22689, 2017.

V. Simon, Comparing growth in surface and cave morphs of the species Astyanax mexicanus: insights from scales, EvoDevo, vol.8, issue.1, p.23, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01660498

H. D. Simpson, A quantitative analysis of branching, growth cone turning, and directed growth in zebrafish retinotectal axon guidance, Journal of Comparative Neurology, vol.521, issue.6, pp.1409-1429, 2013.

C. Singh, J. Rihel, and D. A. Prober, Neuropeptide Y Regulates Sleep by Modulating Noradrenergic Signaling, Current Biology, vol.27, issue.24, pp.3796-3811, 2017.
DOI : 10.1016/j.cub.2017.11.018

URL : https://authors.library.caltech.edu/83754/2/mmc1.pdf

K. A. Soules and B. A. Link, Morphogenesis of the anterior segment in the zebrafish eye, BMC Developmental Biology, vol.5, issue.1, p.12, 2005.

R. W. Sperry, CHEMOAFFINITY IN THE ORDERLY GROWTH OF NERVE FIBER PATTERNS AND CONNECTIONS, Proceedings of the National Academy of Sciences of the United States of America, vol.50, pp.703-713, 1963.

D. L. Stenkamp, Development of the Vertebrate Eye and Retina, Progress in Molecular Biology and Translational Science, vol.134, pp.397-414, 2015.

D. L. Stenkamp, Neurogenesis in the fish retina, International review of cytology, vol.259, pp.173-224, 2007.

E. E. Storm, Dose-dependent functions of Fgf8 in regulating telencephalic patterning centers, Development, issue.9, pp.1831-1875, 2006.

O. Strauss, The Retinal Pigment Epithelium in Visual Function, Physiological Reviews, vol.85, issue.3, pp.845-881, 2005.

U. Strecker, V. H. Faúndez, and H. Wilkens, Phylogeography of surface and cave Astyanax (Teleostei) from Central and North America based on cytochrome b sequence data, Molecular Phylogenetics and Evolution, vol.33, issue.2, pp.469-481, 2004.

A. G. Strickler, Y. Yamamoto, and W. R. Jeffery, Early and late changes in Pax6 expression accompany eye degeneration during cavefish development. Development genes and evolution, vol.211, pp.138-182, 2001.

A. G. Strickler, Y. Yamamoto, and W. R. Jeffery, The lens controls cell survival in the retina: Evidence from the blind cavefish Astyanax, Developmental Biology, vol.311, issue.2, pp.512-523, 2007.

J. B. Sylvester, Competing signals drive telencephalon diversity, Nature Communications, vol.4, p.1745, 2013.

H. Takahashi, Functional mode of FoxD1/CBF2 for the establishment of temporal retinal specificity in the developing chick retina, Developmental Biology, vol.331, issue.2, pp.300-310, 2009.

N. Takahashi, Regulatory mechanism of osteoclastogenesis by RANKL and Wnt signals, Frontiers in bioscience, vol.16, pp.21-30, 2011.

M. Take-uchi, J. D. Clarke, and S. W. Wilson, Hedgehog signalling maintains the optic stalk-retinal interface through the regulation of Vax gene activity, Development, issue.5, pp.955-68, 2003.

M. Tawk, A mirror-symmetric cell division that orchestrates neuroepithelial morphogenesis, Nature, vol.446, issue.7137, pp.797-800, 2007.

T. Teyke, Morphological Differences in Neuromasts of the Blind Cave Fish <i>Astyanax hubbsi </i>and the Sighted River Fish <i>Astyanax mexicanus</i&gt, Brain, Behavior and Evolution, vol.35, issue.1, pp.23-30, 1990.

C. Thisse and B. Thisse, High Throughput Expression Analysis of ZF-Models Consortium Clones. ZFIN Direct Data Submission, 2005.

E. S. Veien, Canonical Wnt signaling is required for the maintenance of dorsal retinal identity, Development, issue.24, pp.4101-4112, 2008.

I. A. Viringipurampeer, Pax2 regulates a fadd-dependent molecular switch that drives tissue fusion during eye development, Human Molecular Genetics, vol.21, issue.10, pp.2357-2369, 2012.

H. Volkoff, Appetite regulating peptides in red-bellied piranha, Pygocentrus nattereri: Cloning, tissue distribution and effect of fasting on mRNA expression levels, Peptides, vol.56, pp.116-140, 2014.

H. Volkoff, Neuropeptides and the control of food intake in fish, General and comparative endocrinology, vol.142, issue.1-2, pp.3-19, 2005.

C. H. Waddington, GENETIC ASSIMILATION OF AN ACQUIRED CHARACTER, Evolution, vol.7, issue.2, pp.118-126, 1953.

H. Wagner, A novel vertebrate eye using both refractive and reflective optics, Current biology : CB, vol.19, issue.2, pp.108-122, 2009.

J. Walshe and I. Mason, Unique and combinatorial functions of Fgf3 and Fgf8 during zebrafish forebrain development, Development, issue.18, p.130, 2003.

X. Wang, Dorsoventral patterning of the Xenopus eye involves differential temporal changes in the response of optic stalk and retinal progenitors to Hh signalling, Neural development, vol.10, issue.1, p.7, 2015.

O. Weiss, Abnormal vasculature interferes with optic fissure closure in lmo2 mutant zebrafish embryos, Developmental biology, vol.369, issue.2, pp.191-199, 2012.

C. A. Weitekamp, A Role for Oxytocin-Like Receptor in Social Habituation in a Teleost, Brain, Behavior and Evolution, vol.89, issue.3, pp.153-161, 2017.

W. Wen, Sox4 regulates choroid fissure closure by limiting Hedgehog signaling during ocular morphogenesis, Developmental Biology, vol.399, issue.1, pp.139-153, 2015.

H. Wilkens and U. Strecker, Available at: https://books.google.fr/books?id=74QlDwAAQBAJ&pg=PA132&lpg=PA132&dq=cavefish+scales&source= bl&ots=jua_Hr2obL&sig=bmCzxpd6K9XJgJySRIeFdoKWDg&hl=fr&sa=X&ved=0ahUKEwiLyb6l9pnaAhUCI8AKHaHgAPcQ6AEIZTAK#v=on epage&q=cavefish scales&f=false, 2017.

M. I. Willardsen, Temporal regulation of Ath5 gene expression during eye development, Developmental Biology, vol.326, issue.2, pp.471-481, 2009.

S. P. Windsor and M. J. Mchenry, The influence of viscous hydrodynamics on the fish lateral-line system, Integrative and Comparative Biology, vol.49, issue.6, pp.691-701, 2009.

I. G. Woods, Neuropeptidergic signaling partitions arousal behaviors in zebrafish, The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.34, issue.9, pp.3142-60, 2014.

M. Y. Wu, SNW1 is a critical regulator of spatial BMP activity, neural plate border formation, and neural crest specification in vertebrate embryos, PLoS biology, vol.9, issue.2, p.1000593, 2011.

K. Yamamoto, S. Bloch, and P. Vernier, New perspective on the regionalization of the anterior forebrain in Osteichthyes, Development, Growth & Differentiation, vol.59, issue.4, pp.175-187, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01572228

Y. Yamamoto, Pleiotropic functions of embryonic sonic hedgehog expression link jaw and taste bud amplification with eye loss during cavefish evolution, Developmental biology, vol.330, issue.1, pp.200-211, 2009.

Y. Yamamoto and W. R. Jeffery, Central Role for the Lens in Cave Fish Eye Degeneration, Science, vol.289, issue.5479, pp.631-633, 2000.

Y. Yamamoto, D. W. Stock, and W. R. Jeffery, Hedgehog signalling controls eye degeneration in blind cavefish, Nature, vol.431, issue.7010, pp.844-851, 2004.

M. Yoshizawa, Chapter 13-The Evolution of Sensory Adaptation in Astyanax mexicanus, Biology and Evolution of the Mexican Cavefish, pp.247-267, 2016.

M. Yoshizawa, Distinct genetic architecture underlies the emergence of sleep loss and prey-seeking behavior in the Mexican cavefish, BMC Biology, vol.13, issue.1, p.15, 2015.

M. Yoshizawa, Evolution of a behavioral shift mediated by superficial neuromasts helps cavefish find food in darkness, Current biology : CB, vol.20, issue.18, pp.1631-1637, 2010.

M. Yoshizawa, The sensitivity of lateral line receptors and their role in the behavior of Mexican blind cavefish (Astyanax mexicanus), The Journal of experimental biology, vol.217, pp.886-95, 2014.

J. Yuasa, Visual projection map specified by topographic expression of transcription factors in the retina, Nature, vol.382, issue.6592, pp.632-635, 1996.

C. Zhang, P. M. Forlano, and R. D. Cone, AgRP and POMC neurons are hypophysiotropic and coordinately regulate multiple endocrine axes in a larval teleost, Cell metabolism, vol.15, issue.2, pp.256-64, 2012.