Genomic evidence of past and future climate-linked loss in a migratory Arctic fish
Autor: | Sarah J. Salisbury, Jong S. Leong, Ian Bradbury, Moira M. Ferguson, Ben F. Koop, Paul V. R. Snelgrove, Paul Bentzen, Sarah J. Lehnert, Daniel E. Ruzzante, Cameron M. Nugent, J. B. Dempson, S. J. Duffy, Kara K S Layton, Tony Kess, Amber M. Messmer, Ryan R. E. Stanley, C. DiBacco |
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Rok vydání: | 2021 |
Předmět: |
Ecological stability
0303 health sciences education.field_of_study 010504 meteorology & atmospheric sciences Range (biology) Ecology Population Biodiversity Climate change 15. Life on land Environmental Science (miscellaneous) 01 natural sciences 03 medical and health sciences Geography Arctic Effective population size 13. Climate action sense organs 14. Life underwater Conservation biology skin and connective tissue diseases education Social Sciences (miscellaneous) 030304 developmental biology 0105 earth and related environmental sciences |
Zdroj: | Nature Climate Change. 11:158-165 |
ISSN: | 1758-6798 1758-678X |
DOI: | 10.1038/s41558-020-00959-7 |
Popis: | Despite widespread biodiversity losses, an understanding of how most taxa will respond to future climate change is lacking. Here we integrate genomics and environmental modelling to assess climate change responses in an ecologically and economically important Arctic species. Environmentally associated genomic diversity and machine learning are used to identify highly vulnerable populations of anadromous (migratory) Arctic charr, and we reconstruct estimates of effective population size spanning the twentieth century to identify past climate-associated declines. We uncover past region-wide declines in effective population size that correspond to decreases in temperature and community biomass in the Northwest Atlantic. We find vulnerable populations near the southern range limit, indicating northward shifts and a possible loss of commercially important life-history variation in response to climate change. The genomic approach used here to investigate climate change response identifies past and future declines that impact species persistence, ecosystem stability and food security in the Arctic. Genomics and environmental modelling are integrated to assess past and future changes in Arctic charr populations in response to changing climate. Southern population vulnerability suggests climate change may lead to northward shifts and the loss of important life-history variation. |
Databáze: | OpenAIRE |
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