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所有进入网中的都是鱼:宏条形码技术在渔业快速捕捞评估中的应用。

All is fish that comes to the net: metabarcoding for rapid fisheries catch assessment.

机构信息

Department of Biology, University of Rome Tor Vergata, Rome, Italy.

PhD program in Evolutionary Biology and Ecology, University of Rome Tor Vergata, Rome, Italy.

出版信息

Ecol Appl. 2021 Mar;31(2):e02273. doi: 10.1002/eap.2273. Epub 2021 Jan 20.

DOI:10.1002/eap.2273
PMID:33290575
Abstract

Monitoring marine resource exploitation is a key activity in fisheries science and biodiversity conservation. Since research surveys are time consuming and costly, fishery-dependent data (i.e., derived directly from fishing vessels) are increasingly credited with a key role in expanding the reach of ocean monitoring. Fishing vessels may be seen as widely ranging data-collecting platforms, which could act as a fleet of sentinels for monitoring marine life, in particular exploited stocks. Here, we investigate the possibility of assessing catch composition of single hauls carried out by trawlers by applying DNA metabarcoding to the dense water draining from fishing nets just after the end of hauling operations (hereafter "slush"). We assess the performance of this approach in portraying β-diversity and examining the quantitative relationship between species abundances in the catch and DNA amount in the slush (read counts generated by amplicon sequencing). We demonstrate that the assemblages identified using DNA in the slush satisfactorily mirror those returned by visual inspection of net content (about 71% of species and 86% of families of fish) and detect a strong relationship between read counts and species abundances in the catch. We therefore argue that this approach could be upscaled to serve as a powerful source of information on the structure of demersal assemblages and the impact of fisheries.

摘要

监测海洋资源开发是渔业科学和生物多样性保护的一项关键活动。由于研究调查既费时又费钱,因此渔业相关数据(即直接从渔船获得的数据)在扩大海洋监测范围方面的作用越来越受到重视。渔船可以被视为广泛的收集数据平台,可以作为监测海洋生物的哨兵船队,特别是对捕捞种群进行监测。在这里,我们通过对拖网结束后从渔网中排出的密集水样(以下简称“泥浆”)进行 DNA metabarcoding,研究了评估单拖网渔获物组成的可能性。我们评估了这种方法在描绘β多样性和检查渔获物中物种丰度与泥浆中 DNA 量(通过扩增子测序生成的读长数)之间定量关系方面的性能。我们证明,使用泥浆中的 DNA 鉴定的组合很好地反映了通过对网内内容进行视觉检查所获得的组合(约 71%的鱼类物种和 86%的鱼类科),并检测到了读长数与渔获物中物种丰度之间的强关系。因此,我们认为这种方法可以扩大规模,成为底栖组合结构和渔业影响的有力信息来源。

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