Chapman, B. B. et al. Partial migration in fishes: Causes and consequences. J. Fish Biol. 81, 456–478 (2012).
Google Scholar
Araújo, C. V. M. et al. Habitat fragmentation caused by contaminants: Atrazine as a chemical barrier isolating fish populations. Chemosphere 193, 24–31 (2018).
Google Scholar
Flitcroft, R. L., Arismendi, I. & Santelmann, M. V. A review of habitat connectivity research for pacific salmon in marine, estuary, and freshwater environments. J. Am. Water Resour. Assoc. 55, 430–441 (2019).
Google Scholar
Maire, A., Thierry, E., Viechtbauer, W. & Daufresne, M. Poleward shift in large-river fish communities detected with a novel meta-analysis framework. Freshw. Biol. 64, 1143–1156 (2019).
Google Scholar
van Vliet, M. T. H. et al. Coupled daily streamflow and water temperature modelling in large river basins. Hydrol. Earth Syst. Sci. 16, 4303–4321 (2012).
Google Scholar
Palmer, M. A. et al. Climate change and the world’s river basins: Anticipating management options. Front. Ecol. Environ. 6, 81–89 (2008).
Google Scholar
Jonsson, B. & Jonsson, N. A review of the likely effects of climate change on anadromous Atlantic salmon Salmo salar and brown trout Salmo trutta, with particular reference to water temperature and flow. J. Fish Biol. 75, 2381–2447 (2009).
Google Scholar
Arevalo, E. et al. An innovative bivariate approach to detect joint temporal trends in environmental conditions: Application to large French rivers and diadromous fish. Sci. Total Environ. 748, 141260 (2020).
Google Scholar
Hughes, L. Biological consequences of global warming: Is the signal already apparent?. Trends Ecol. Evol. 15, 56–61 (2000).
Google Scholar
Tesch, F.-W. & Bartsch, P. The Eel (Blackwell Science, 2003).
Google Scholar
Durif, C. M. F. et al. Age of European silver eels during a period of declining abundance in Norway. Ecol. Evol. 10, 4801–4815 (2020).
Google Scholar
Poole, R. W. & Reynolds, J. D. Growth rate and age at migration of Anguilla anguilla. J. Fish Biol. 48, 633–642 (1996).
Durif, C. M. F., Travade, F., Rives, J., Elie, P. & Gosset, C. Relationship between locomotor activity, environmental factors, and timing of the spawning migration in the European eel Anguilla anguilla. Aquat. Living Resour. 21, 163–170 (2008).
Google Scholar
Fontaine, M. Physiological mechanisms in the migration of marine and amphihaline fish. Adv. Mar. Biol. 13, 241–355 (1975).
Google Scholar
Bruijs, M. C. M. & Durif, C. M. F. Silver Eel migration and behaviour. Spawning Migr. Eur. Eel https://doi.org/10.1007/978-1-4020-9095-0_4 (2009).
Google Scholar
ICES. Workshop on the temporal migration patterns of European eel (WKEELMIGRATION). vol. 2 http://doi.org/https://doi.org/10.17895/ices.pub.5993 (2020).
Vøllestad, L. A., Jonsson, B., Hvidsten, N. A. & Naesje, T. F. Experimental test of environmental factors influencing the seaward migration of European silver eels. J. Fish Biol. 45, 641–651 (1994).
Google Scholar
Sandlund, O. T. et al. Timing and pattern of annual silver eel migration in two European watersheds are determined by similar cues. Ecol. Evol. 7, 5956–5966 (2017).
Google Scholar
Drouineau, H. et al. Freshwater eels: A symbol of the effects of global change. Fish Fish. 19, 903–930 (2018).
Google Scholar
Pike, C., Crook, V., & Gollock, M. Anguilla anguilla. The IUCN Red List of Treatened Species 2020. https://dx.doi.org/https://doi.org/10.2305/IUCN.UK.2020-539 2.RLTS.T60344A152845178.en (2020).
Dankers, R. & Feyen, L. Climate change impact on flood hazard in Europe: An assessment based on high-resolution climate simulations. J. Geophys. Res. Atmos. 113, 1–17 (2008).
Google Scholar
Reid, A. J. et al. Emerging threats and persistent conservation challenges for freshwater biodiversity. Biol. Rev. 94, 849–873 (2019).
Google Scholar
Trenberth, K. E. et al. Global warming and changes in drought. Nat. Clim. Chang. 4, 17–22 (2014).
Google Scholar
Durif, C., Elie, P., Gosset, C. & Rives, J. Behavioral Study of Downstream Migrating Eels by Radio-telemetry at a Small Hydroelectric Power Plant. Am. Fish. Soc. Symp. 1–14 (2002).
Flitcroft, R. L. et al. Linking hydroclimate to fish phenology and habitat use with ichthyographs. PLoS ONE 11, 1–12 (2016).
Google Scholar
Bossard, M., Feranec, J. & Othael, J. CORINE Land Cover Technical Guide – Addendum 2000. European Environment Agency. Technical Report. Available online at: http://www.eea.europa.eu/publications/tech40add. (2000).
de Eyto, E. et al. Characterisation of salmonid food webs in the rivers and lakes of an Irish peatland ecosystem. Biol. Environ. Proc. R. Irish Acad. 120, 1–17 (2020).
Poole, W. R., Reynolds, J. D. & Moriarty, C. Observations on the Silver Eel Migrations of the Burrishoole River System, Ireland, 1959 to 1988. Int. Rev. der gesamten Hydrobiol. und Hydrogr 75, 807–815 (1990).
Google Scholar
Poole, W. R. et al. Long-term variation in numbers and biomass of silver eels being produced in two European river systems. ICES J. Mar. Sci. 75, 1627–1637 (2018).
Google Scholar
Chacón, J. E. & Duong, T. Multivariate plug-in bandwidth selection with unconstrained pilot bandwidth matrices. TEST 19, 375–398 (2010).
Google Scholar
Lechowicz, M. The sampling characteristics of electivity indices. Oecologia 52, 22–30 (1982).
Google Scholar
Ivlev, V. S. Experimental ecology of the feeding fishes (Yale University Press, 1961).
R Development Core Team. R: A Language and Environment for Statistical Computing. (2020).
Drouineau, H., Arevalo, E., Lassalle, G., Tétard, S. & Maire, A. chocR: Exploring the temporal CHange of OCcurence of events in multivariate time series. R package version 0.0.0.9000. (2020).
Hutchinson, G. E. Concluding Remarks. in Cold Spring Harbor Symposia on Quantitative Biology 415–442 (1957).
Schneider, C., Laizé, C. L. R., Acreman, M. C. & Flörke, M. How will climate change modify river flow regimes in Europe?. Hydrol. Earth Syst. Sci. 17, 325–339 (2013).
Google Scholar
Hannaford, J., Laize, C. L. R. & Marsh, T. J. An assessment of runoff trends in undisturbed catchments in the Celtic regions of North West Europe. IAHS-AISH Publ. 78–85 (2007).
Engen-Skaugen, T. Refinement of dynamically downscaled precipitation and temperature scenarios. Clim. Change 84, 365–382 (2007).
Google Scholar
Lawrence, D. & Hisdal, H. Hydrological projections for floods in Norway under a future climate. NVE Report http://webby.nve.no/publikasjoner/report/2011/report2011_05.pdf (2011).
Woolway, R. I. et al. Substantial increase in minimum lake surface temperatures under climate change. Clim. Change 155, 81–94 (2019).
Google Scholar
Fealy, R. et al. RESCALE : Review and Simulate Climate and Catchment Responses at Burrishoole. Review Literature and Arts of the Americas (2014).
Als, T. D. et al. All roads lead to home: Panmixia of European eel in the Sargasso Sea. Mol. Ecol. 20, 1333–1346 (2011).
Google Scholar
Acou, A., Laffaille, P., Legault, A. & Feunteun, E. Migration pattern of silver eel (Anguilla anguilla, L.) in an obstructed river system. Ecol. Freshw. Fish 17, 432–442 (2008).
Google Scholar
Fernandes, W. P. A. et al. Does relatedness influence migratory timing and behaviour in Atlantic salmon smolts?. Anim. Behav. 106, 191–199 (2015).
Google Scholar
Vøllestad, L. A. et al. Environmental Factors Regulating the Seaward Migration of European Silver Eels (Anguilla anguilla). Can. J. Fish. Aquat. Sci. 43, 1909–1916 (1986).
Google Scholar
Daverat, F. et al. One century of eel growth: Changes and implications. Ecol. Freshw. Fish 21, 325–336 (2012).
Google Scholar
Vøllestad, L. A. Geographic variation in age and length at metamorphosis of maturing European eel: Environmental effects and phenotypic plasticity. J. Anim. Ecol. 61, 41 (1992).
Google Scholar
Vaughan, L. et al. Growth rates in a European eel Anguilla anguilla (L., 1758) population show a complex relationship with temperature over a seven-decade otolith biochronology. ICES J. Mar. Sci. (2021).
Lassalle, G. & Rochard, E. Impact of twenty-first century climate change on diadromous fish spread over Europe, North Africa and the Middle East. Glob. Chang. Biol. 15, 1072–1089 (2009).
Google Scholar
Monteiro, R. M. et al. Migration and escapement of silver eel males, Anguilla anguilla, from a southwestern European river. Ecol. Freshw. Fish https://doi.org/10.1111/eff.12545 (2020).
Google Scholar
Mateo, M. et al. Cause or consequence? Exploring the role of phenotypic plasticity and genetic polymorphism in the emergence of phenotypic spatial patterns of the European eel. Can. J. Fish. Aquat. Sci. 74, 987–999 (2017).
Google Scholar
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