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深海生物多样性评估中形态学和分子方法之间的科学与预算权衡。

Scientific and budgetary trade-offs between morphological and molecular methods for deep-sea biodiversity assessment.

作者信息

Le Jennifer T, Levin Lisa A, Lejzerowicz Franck, Cordier Tristan, Gooday Andrew J, Pawlowski Jan

机构信息

Center for Marine Biodiversity and Conservation, Scripps Institution of Oceanography, University of California San Diego, La Jolla, California, USA.

Jacobs School of Engineering, University of California San Diego, La Jolla, USA.

出版信息

Integr Environ Assess Manag. 2022 May;18(3):655-663. doi: 10.1002/ieam.4466. Epub 2021 Jun 17.

DOI:10.1002/ieam.4466
PMID:34019727
Abstract

Deep-sea biodiversity, a source of critical ecological functions and ecosystem services, is increasingly subject to the threat of disturbance from existing practices (e.g., fishing, waste disposal, oil and gas extraction) as well as emerging industries such as deep-seabed mining. Current scientific tools may not be adequate for monitoring and assessing subsequent changes to biodiversity. In this paper, we evaluate the scientific and budgetary trade-offs associated with morphology-based taxonomy and metabarcoding approaches to biodiversity surveys in the context of nascent deep-seabed mining for polymetallic nodules in the Clarion-Clipperton Zone, the area of most intense interest. For the dominant taxa of benthic meiofauna, we discuss the types of information produced by these methods and use cost-effectiveness analysis to compare their abilities to yield biological and ecological data for use in environmental assessment and management. On the basis of our evaluation, morphology-based taxonomy is less cost-effective than metabarcoding but offers scientific advantages, such as the generation of density, biomass, and size structure data. Approaches that combine the two methods during the environmental assessment phase of commercial activities may facilitate future biodiversity monitoring and assessment for deep-seabed mining and for other activities in remote deep-sea habitats, for which taxonomic data and expertise are limited. Integr Environ Assess Manag 2022;18:655-663. © 2021 SETAC.

摘要

深海生物多样性是关键生态功能和生态系统服务的来源,越来越受到现有活动(如捕鱼、废物处理、石油和天然气开采)以及深海采矿等新兴产业干扰的威胁。目前的科学工具可能不足以监测和评估生物多样性的后续变化。在本文中,我们在克拉里昂-克利珀顿区(最受关注的区域)新兴的多金属结核深海采矿背景下,评估了与基于形态学的分类学和元条形码方法用于生物多样性调查相关的科学和预算权衡。对于底栖小型动物的优势类群,我们讨论了这些方法产生的信息类型,并使用成本效益分析来比较它们获取用于环境评估和管理的生物和生态数据的能力。基于我们的评估,基于形态学的分类学比元条形码成本效益低,但具有科学优势,例如生成密度、生物量和大小结构数据。在商业活动的环境评估阶段结合这两种方法的途径,可能有助于未来对深海采矿以及分类学数据和专业知识有限的偏远深海栖息地的其他活动进行生物多样性监测和评估。《综合环境评估与管理》2022年;18:655 - 663。© 2021 SETAC。

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