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Cross-basin and cross-taxa patterns of marine community tropicalization and deborealization in warming European seas

Authors :
Chust, Guillem
Villarino, Ernesto
Mclean, Matthew
Mieszkowska, Nova
Benedetti-cecchi, Lisandro
Bulleri, Fabio
Ravaglioli, Chiara
Borja, Angel
Muxika, Iñigo
Fernandes-salvador, José A.
Ibaibarriaga, Leire
Uriarte, Ainhize
Revilla, Marta
Villate, Fernando
Iriarte, Arantza
Uriarte, Ibon
Zervoudaki, Soultana
Carstensen, Jacob
Somerfield, Paul J.
Queirós, Ana M.
Mcevoy, Andrea J.
Auber, Arnaud
Hidalgo, Manuel
Coll, Marta
Garrabou, Joaquim
Gómez-gras, Daniel
Linares, Cristina
Ramírez, Francisco
Margarit, Núria
Lepage, Mario
Dambrine, Chloé
Lobry, Jérémy
Peck, Myron A.
De La Barra, Paula
Van Leeuwen, Anieke
Rilov, Gil
Yeruham, Erez
Brind'Amour, Anik
Lindegren, Martin
Chust, Guillem
Villarino, Ernesto
Mclean, Matthew
Mieszkowska, Nova
Benedetti-cecchi, Lisandro
Bulleri, Fabio
Ravaglioli, Chiara
Borja, Angel
Muxika, Iñigo
Fernandes-salvador, José A.
Ibaibarriaga, Leire
Uriarte, Ainhize
Revilla, Marta
Villate, Fernando
Iriarte, Arantza
Uriarte, Ibon
Zervoudaki, Soultana
Carstensen, Jacob
Somerfield, Paul J.
Queirós, Ana M.
Mcevoy, Andrea J.
Auber, Arnaud
Hidalgo, Manuel
Coll, Marta
Garrabou, Joaquim
Gómez-gras, Daniel
Linares, Cristina
Ramírez, Francisco
Margarit, Núria
Lepage, Mario
Dambrine, Chloé
Lobry, Jérémy
Peck, Myron A.
De La Barra, Paula
Van Leeuwen, Anieke
Rilov, Gil
Yeruham, Erez
Brind'Amour, Anik
Lindegren, Martin
Source :
Nature Communications (2041-1723) (Springer Science and Business Media LLC), 2024-03 , Vol. 15 , N. 1 , P. 2126 (13p.)
Publication Year :
2024

Abstract

Ocean warming and acidification, decreases in dissolved oxygen concentrations, and changes in primary production are causing an unprecedented global redistribution of marine life. The identification of underlying ecological processes underpinning marine species turnover, particularly the prevalence of increases of warm-water species or declines of cold-water species, has been recently debated in the context of ocean warming. Here, we track changes in the mean thermal affinity of marine communities across European seas by calculating the Community Temperature Index for 65 biodiversity time series collected over four decades and containing 1,817 species from different communities (zooplankton, coastal benthos, pelagic and demersal invertebrates and fish). We show that most communities and sites have clearly responded to ongoing ocean warming via abundance increases of warm-water species (tropicalization, 54%) and decreases of cold-water species (deborealization, 18%). Tropicalization dominated Atlantic sites compared to semi-enclosed basins such as the Mediterranean and Baltic Seas, probably due to physical barrier constraints to connectivity and species colonization. Semi-enclosed basins appeared to be particularly vulnerable to ocean warming, experiencing the fastest rates of warming and biodiversity loss through deborealization.

Details

Database :
OAIster
Journal :
Nature Communications (2041-1723) (Springer Science and Business Media LLC), 2024-03 , Vol. 15 , N. 1 , P. 2126 (13p.)
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1427433180
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.s41467-024-46526-y