4.7 Review

Fishing for fish environmental DNA: Ecological applications, methodological considerations, surveying designs, and ways forward

期刊

MOLECULAR ECOLOGY
卷 31, 期 20, 页码 5132-5164

出版社

WILEY
DOI: 10.1111/mec.16659

关键词

aquatic ecosystem; biodiversity surveillance; DNA metabarcoding; eRNA; fish conservation; fisheries management

资金

  1. National Natural Science Foundation of China [32100395]
  2. National Science and Technology Basic Resources Survey Program of China [2019FY101700]
  3. Second Tibetan Plateau Scientific Expedition and Research Program [2019QZKK0304, 2019QZKK0503]
  4. Special Project for Social Development of Yunnan Province [202103AC100001]

向作者/读者索取更多资源

The vast declines in freshwater and marine fish diversity and population abundance have serious implications for ecosystems and human livelihoods. Environmental DNA (eDNA) biomonitoring provides an efficient and cost-effective method for assessing species occurrences and population trends in aquatic environments. This study analyzes 416 fish eDNA studies, highlighting the potential of eDNA technology in improving fish conservation and fisheries management. The study also identifies methodological concerns and provides guidelines for effective sampling in different aquatic habitats.
Vast global declines of freshwater and marine fish diversity and population abundance pose serious threats to both ecosystem sustainability and human livelihoods. Environmental DNA (eDNA)-based biomonitoring provides robust, efficient, and cost-effective assessment of species occurrences and population trends in diverse aquatic environments. Thus, it holds great potential for improving conventional surveillance frameworks to facilitate fish conservation and fisheries management. However, the many technical considerations and rapid developments underway in the eDNA arena can overwhelm researchers and practitioners new to the field. Here, we systematically analysed 416 fish eDNA studies to summarize research trends in terms of investigated targets, research aims, and study systems, and reviewed the applications, rationales, methodological considerations, and limitations of eDNA methods with an emphasis on fish and fisheries research. We highlighted how eDNA technology may advance our knowledge of fish behaviour, species distributions, population genetics, community structures, and ecological interactions. We also synthesized the current knowledge of several important methodological concerns, including the qualitative and quantitative power eDNA has to recover fish biodiversity and abundance, and the spatial and temporal representations of eDNA with respect to its sources. To facilitate ecological applications implementing fish eDNA techniques, recent literature was summarized to generate guidelines for effective sampling in lentic, lotic, and marine habitats. Finally, we identified current gaps and limitations, and pointed out newly emerging research avenues for fish eDNA. As methodological optimization and standardization improve, eDNA technology should revolutionize fish monitoring and promote biodiversity conservation and fisheries management that transcends geographic and temporal boundaries.

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