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Biblioteca Origen csic
Identificador 09603166
Identificador http://hdl.handle.net/10261/430511
Identificador 10.1007/s11160-025-10024-1
Identificador 2-s2.0-105029408213
Identificador https://api.elsevier.com/content/abstract/scopus_id/105029408213
Título Forecasting size-at-maturity shifts under global warming: a case study on European hake, a widely distributed species
Autor Nachón, David José
Autor Ramírez-Romero, Eduardo
Autor Rodríguez-Paz, Anxo
Autor Cousido-Rocha, Marta
Autor Fernández Izquierdo, Francisco
Autor Pennino, Maria Grazia
Autor Cerviño, Santiago
Materia Body size
Materia Climate change
Materia Evolutionary trends
Materia Fisheries management
Materia Life-history traits
Materia Thermal tolerance
Resumen As global temperatures rise, the life-history traits of many marine species are changing, with important implications for fish stocks, ecosystems, and fisheries. In fish populations, both plastic and genetic adaptations in traits like body size and maturity timing are influenced by fishing pressures and environmental changes. As ectothermic animals, fish rely on external temperatures to regulate physiological processes, making them vulnerable to warming oceans. While shifts in fish distribution and abundance have received considerable attention, changes in size-at-maturity remain less studied. This study investigates how warming seas influence size-at-maturity, a key indicator of reproductive value and stock productivity, using European hake (Merluccius merluccius (Linnaeus, 1758)), as a case study. We compiled a dataset spanning 1925–2021, including size-at-maturity records and corresponding temperature data. This dataset covers temperature ranges from the North Atlantic to the Mediterranean, providing a comprehensive look at the hake’s habitat. Using Generalized Additive Models (GAMs), we identified a consistent negative correlation between temperature and size-at-maturity, aligning with theories like James’ Rule and the Temperature-Size Rule (TSR). Under climate change projections (RCP 4.5 and 8.5), our results suggest that size-at-maturity in European hake may decrease by 4–9 cm by 2100, although the extent of this reduction varies across areas. These findings have significant implications not only for European hake, a key fishery resource, but also for other demersal species that may similarly experience reduced size-at-maturity in warming seas. This study highlights the need for adaptive management strategies to address climate change effects on marine ecosystems and fisheries. | Peer reviewed
Contribuidor 0000-0002-1090-9993 | 0000-0002-7228-6939 | 0000-0002-1223-6200 | 0000-0002-4587-8808 | 0000-0002-0781-1354 | 0000-0002-7577-2617 | 0000-0003-4146-0890 | Consejo Superior de Investigaciones Científicas [https://ror.org/02gfc7t72]
Fecha de Publicación 2026-12-01
Tipo info:eu-repo/semantics/article | http://purl.org/coar/resource_type/c_6501
Relación Reviews in Fish Biology and Fisheries | Sí
Derechos info:eu-repo/semantics/openAccess
Información OAI  
ID oai:digital.csic.es:10261/430511
Última Modificación 2026-05-01
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