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Non-Lethal Sampling Supports Integrative Movement Research in Freshwater Fish

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FRONTIERS IN GENETICS
卷 13, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fgene.2022.795355

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sublethal; aquatic; genomic; RNA-seq; transcriptomic; molecular; biopsy; interdisciplinary

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Freshwater ecosystems and fishes are important resources for human uses and biodiversity, but are threatened by climate change and human activities such as dams. Non-lethal movement research, such as acoustic telemetry and non-lethal tissue biopsies, can help address conservation issues. Genetics methods, including population genetics and genome-wide association studies, can also be used to study movement in freshwater fishes.
Freshwater ecosystems and fishes are enormous resources for human uses and biodiversity worldwide. However, anthropogenic climate change and factors such as dams and environmental contaminants threaten these freshwater systems. One way that researchers can address conservation issues in freshwater fishes is via integrative non-lethal movement research. We review different methods for studying movement, such as with acoustic telemetry. Methods for connecting movement and physiology are then reviewed, by using non-lethal tissue biopsies to assay environmental contaminants, isotope composition, protein metabolism, and gene expression. Methods for connecting movement and genetics are reviewed as well, such as by using population genetics or quantitative genetics and genome-wide association studies. We present further considerations for collecting molecular data, the ethical foundations of non-lethal sampling, integrative approaches to research, and management decisions. Ultimately, we argue that non-lethal sampling is effective for conducting integrative, movement-oriented research in freshwater fishes. This research has the potential for addressing critical issues in freshwater systems in the future.

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