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Synthesizing the role of epigenetics in the response and adaptation of species to climate change in freshwater ecosystems

AbstractFreshwater ecosystems are amongst the most threatened ecosystems on Earth. Currently, climate change is one of the most important drivers of freshwater transformation and its effects include changes in the composition, biodiversity and functioning of freshwater ecosystems. Understanding the capacity of freshwater species to tolerate the environmental fluctuations induced by climate change is critical to the development of effective conservation strategies. In the last few years, epigenetic mechanisms were increasingly put forward in this context because of their pivotal role in gene–environment interactions. In addition, the evolutionary role of epigenetically inherited phenotypes is a relatively recent but promising field. Here, we examine and synthesize the impacts of climate change on freshwater ecosystems, exploring the potential role of epigenetic mechanisms in both short‐ and long‐term adaptation of species. Following this wrapping‐up of current evidence, we particularly focused on bringing together the most promising future research avenues towards a better understanding of the effects of climate change on freshwater biodiversity, specifically highlighting potential molecular targets and the most suitable freshwater species for future epigenetic studies in this context.
- University of Aveiro Portugal
- Ghent University Belgium
- Centro de Estudos Ambientais e Marinhos Portugal
- University of Aveiro Portugal
- Centro de Estudos Ambientais e Marinhos Portugal
Epigenomics, LIFE-HISTORY, Conservation of Natural Resources, MULTIPLE STRESSORS, GENETIC EROSION, phenotype, Acclimatization, Climate Change, epigenetic mechanisms, Fresh Water, adaptation, PHENOTYPIC PLASTICITY, freshwater biodiversity, Animals, Ecosystem, DNA METHYLATION PATTERNS, Biology and Life Sciences, Biodiversity, DNA Methylation, Adaptation, Physiological, Biological Evolution, MARBLED CRAYFISH, DAPHNIA-MAGNA, Lakes, climate change, NONCODING RNAS, Earth and Environmental Sciences, transgenerational epigenetic inheritance, ARABIDOPSIS-THALIANA, CYTOSINE METHYLATION
Epigenomics, LIFE-HISTORY, Conservation of Natural Resources, MULTIPLE STRESSORS, GENETIC EROSION, phenotype, Acclimatization, Climate Change, epigenetic mechanisms, Fresh Water, adaptation, PHENOTYPIC PLASTICITY, freshwater biodiversity, Animals, Ecosystem, DNA METHYLATION PATTERNS, Biology and Life Sciences, Biodiversity, DNA Methylation, Adaptation, Physiological, Biological Evolution, MARBLED CRAYFISH, DAPHNIA-MAGNA, Lakes, climate change, NONCODING RNAS, Earth and Environmental Sciences, transgenerational epigenetic inheritance, ARABIDOPSIS-THALIANA, CYTOSINE METHYLATION
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