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海下诱捕视频(BRUV)和环境 DNA(eDNA)监测海洋生态群落的成本效益分析。

Cost-effort analysis of Baited Remote Underwater Video (BRUV) and environmental DNA (eDNA) in monitoring marine ecological communities.

机构信息

Department of Ecology & Evolution, School of Life Sciences, University of Sussex, Brighton, United Kingdom.

Department of Geography, University of Sussex, Brighton, United Kingdom.

出版信息

PeerJ. 2024 Apr 30;12:e17091. doi: 10.7717/peerj.17091. eCollection 2024.

Abstract

Monitoring the diversity and distribution of species in an ecosystem is essential to assess the success of restoration strategies. Implementing biomonitoring methods, which provide a comprehensive assessment of species diversity and mitigate biases in data collection, holds significant importance in biodiversity research. Additionally, ensuring that these methods are cost-efficient and require minimal effort is crucial for effective environmental monitoring. In this study we compare the efficiency of species detection, the cost and the effort of two non-destructive sampling techniques: Baited Remote Underwater Video (BRUV) and environmental DNA (eDNA) metabarcoding to survey marine vertebrate species. Comparisons were conducted along the Sussex coast upon the introduction of the Nearshore Trawling Byelaw. This Byelaw aims to boost the recovery of the dense kelp beds and the associated biodiversity that existed in the 1980s. We show that overall BRUV surveys are more affordable than eDNA, however, eDNA detects almost three times as many species as BRUV. eDNA and BRUV surveys are comparable in terms of effort required for each method, unless eDNA analysis is carried out externally, in which case eDNA requires less effort for the lead researchers. Furthermore, we show that increased eDNA replication yields more informative results on community structure. We found that using both methods in conjunction provides a more complete view of biodiversity, with BRUV data supplementing eDNA monitoring by recording species missed by eDNA and by providing additional environmental and life history metrics. The results from this study will serve as a baseline of the marine vertebrate community in Sussex Bay allowing future biodiversity monitoring research projects to understand community structure as the ecosystem recovers following the removal of trawling fishing pressure. Although this study was regional, the findings presented herein have relevance to marine biodiversity and conservation monitoring programs around the globe.

摘要

监测生态系统中物种的多样性和分布对于评估恢复策略的成功至关重要。实施生物监测方法对于生物多样性研究具有重要意义,因为这些方法可以全面评估物种多样性,并减轻数据收集的偏差。此外,确保这些方法具有成本效益且需要最小的努力对于有效的环境监测至关重要。在这项研究中,我们比较了两种非破坏性采样技术:诱捕式远程水下视频(BRUV)和环境 DNA(eDNA)宏条形码在调查海洋脊椎动物物种时的物种检测效率、成本和工作量。比较是在苏塞克斯海岸进行的,当时引入了近岸拖网法规。该法规旨在促进密斑贻贝床和 20 世纪 80 年代存在的相关生物多样性的恢复。我们表明,总体而言,BRUV 调查比 eDNA 更实惠,但是 eDNA 检测到的物种几乎是 BRUV 的三倍。在每种方法所需的工作量方面,eDNA 和 BRUV 调查是可比的,除非 eDNA 分析是在外部进行的,在这种情况下,eDNA 分析对于首席研究人员来说需要更少的工作量。此外,我们表明,增加 eDNA 复制可以提供更有信息量的群落结构结果。我们发现,结合使用这两种方法可以更全面地了解生物多样性,BRUV 数据通过记录 eDNA 监测遗漏的物种并提供额外的环境和生活史指标来补充 eDNA 监测。这项研究的结果将作为苏塞克斯湾海洋脊椎动物群落的基线,允许未来的生物多样性监测研究项目在生态系统从拖网捕鱼压力中恢复后,了解群落结构。尽管这项研究是区域性的,但本文提出的发现与全球海洋生物多样性和保护监测计划具有相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c2f/11067900/b65429a50038/peerj-12-17091-g001.jpg

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