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Evolution of Marine Organisms under Climate Change at Different Levels of Biological Organisation

doi: 10.3390/w6113545
handle: 11250/276678 , 10447/636501 , 11585/579570 , 11122/12875
Research to date has suggested that both individual marine species and ecological processes are expected to exhibit diverse responses to the environmental effects of climate change. Evolutionary responses can occur on rapid (ecological) timescales, and yet studies typically do not consider the role that adaptive evolution will play in modulating biological responses to climate change. Investigations into such responses have typically been focused at particular biological levels (e.g., cellular, population, community), often lacking interactions among levels. Since all levels of biological organisation are sensitive to global climate change, there is a need to elucidate how different processes and hierarchical interactions will influence species fitness. Therefore, predicting the responses of communities and populations to global change will require multidisciplinary efforts across multiple levels of hierarchy, from the genetic and cellular to communities and ecosystems. Eventually, this may allow us to establish the role that acclimatisation and adaptation will play in determining marine community structures in future scenarios.
- University of Alabama at Birmingham United States
- University of Alabama at Birmingham United States
- Plymouth Marine Laboratory United Kingdom
- Marine Biological Association of the United Kingdom United Kingdom
- Queen's University Belfast United Kingdom
Acclimation, Adaptation, Biological organisation, Biologically-relevant scales, Climate change, Evolutionary potential, Ocean acidification, ocean acidification, adaptation, acclimation, evolutionary potential, biologically-relevant scales, biological organisation, Biologically-relevant scales, Evolutionary potential, Climate change, Adaptation, BIO, TD201-500, Biological organisation, ECL, Water supply for domestic and industrial purposes, Ocean acidification, Hydraulic engineering, Acclimation; Adaptation; Biological organisation; Biologically-relevant scales; Climate change; Evolutionary potential; Ocean acidification; Geography, Planning and Development; Biochemistry; Aquatic Science; Water Science and Technology, MAR, climate change, TC1-978, Acclimation
Acclimation, Adaptation, Biological organisation, Biologically-relevant scales, Climate change, Evolutionary potential, Ocean acidification, ocean acidification, adaptation, acclimation, evolutionary potential, biologically-relevant scales, biological organisation, Biologically-relevant scales, Evolutionary potential, Climate change, Adaptation, BIO, TD201-500, Biological organisation, ECL, Water supply for domestic and industrial purposes, Ocean acidification, Hydraulic engineering, Acclimation; Adaptation; Biological organisation; Biologically-relevant scales; Climate change; Evolutionary potential; Ocean acidification; Geography, Planning and Development; Biochemistry; Aquatic Science; Water Science and Technology, MAR, climate change, TC1-978, Acclimation
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