环境DNA作为水电影响评估工具:现状、特殊考虑及未来整合。

IF 11.7 1区 生物学 Q1 BIOLOGY
Kristine N Moody, Steven T Gardner, Line E Sundt-Hansen, Frode Fossøy, Dana N McCoskey, Katherine J Morrice, Brenda M Pracheil
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引用次数: 0

摘要

在全球范围内,迫切需要找到可持续的解决办法,在能源生产与保护脆弱物种和保护生物多样性之间取得平衡。这对淡水生态系统、栖息地和物种尤其重要,因为它们可能受到水电开发和满足电网需求所需的运营的影响。可靠、准确的环境影响评估(eia)能够识别水电的生物、物理或社会影响,是确保生物多样性、生态系统和社会可持续性的关键。环境DNA (eDNA)分析有可能改变水电环境影响评估、管理和缓解规划以及决策程序。此外,在水电规划和持续运营期间,将环境dna调查纳入环评,可以提高我们对可能受影响的生物群和栖息地的了解,并评估减轻环境影响,从而简化监管程序。在这里,我们:(i)强调目前对淡水环境中eDNA的理解和使用;审查将eDNA纳入水电环评和生物监测的关键考虑因素;确定水电调节系统特有的eDNA分析和应用方面的知识差距;(iv)讨论未来将eDNA纳入水电研究的机会,包括监管认可和公众参与。虽然我们承认,有几个因素可能会使eDNA作为评估水电影响的工具的广泛采用复杂化,但我们预计,通过水电特定的协议、校准和验证,对eDNA的信心日益增强,将克服这些固有的不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental DNA as a tool for hydropower impact assessments: current status, special considerations, and future integration.

Globally there is an urgent need to find sustainable solutions to balance energy production with the protection of vulnerable species and conservation of biodiversity. This is particularly critical for freshwater ecosystems, habitats, and species that may be impacted by hydropower development and operations needed to meet energy grid demands. Reliable and accurate environmental impact assessments (EIAs) that identify the biological, physical, or social impacts of hydropower are key to ensure biodiversity, ecosystem, and societal sustainability. The analysis of environmental DNA (eDNA) has the potential to transform hydropower EIAs, management and mitigation planning, and decision-making procedures. Further, the incorporation of eDNA surveys into EIAs during both hydropower planning and continued operations may streamline regulatory processes by improving our understanding of potentially impacted biota and habitats and evaluating environmental impacts mitigation. Here, we: (i) highlight current understanding and use of eDNA in freshwater environments; (ii) examine critical considerations for eDNA integration into hydropower EIAs and biological monitoring; (iii) identify knowledge gaps in eDNA analysis and applications unique to hydropower-regulated systems; and (iv) discuss future opportunities to bolster the incorporation of eDNA into hydropower research including regulatory acceptance and public engagement. While we acknowledge that there are several factors that may complicate the broad adoption of eDNA as a tool for assessing the impacts of hydropower, we anticipate that growing confidence in eDNA through hydropower-specific protocols, calibrations, and validations will overcome these inherent uncertainties.

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来源期刊
Biological Reviews
Biological Reviews 生物-生物学
CiteScore
21.30
自引率
2.00%
发文量
99
审稿时长
6-12 weeks
期刊介绍: Biological Reviews is a scientific journal that covers a wide range of topics in the biological sciences. It publishes several review articles per issue, which are aimed at both non-specialist biologists and researchers in the field. The articles are scholarly and include extensive bibliographies. Authors are instructed to be aware of the diverse readership and write their articles accordingly. The reviews in Biological Reviews serve as comprehensive introductions to specific fields, presenting the current state of the art and highlighting gaps in knowledge. Each article can be up to 20,000 words long and includes an abstract, a thorough introduction, and a statement of conclusions. The journal focuses on publishing synthetic reviews, which are based on existing literature and address important biological questions. These reviews are interesting to a broad readership and are timely, often related to fast-moving fields or new discoveries. A key aspect of a synthetic review is that it goes beyond simply compiling information and instead analyzes the collected data to create a new theoretical or conceptual framework that can significantly impact the field. Biological Reviews is abstracted and indexed in various databases, including Abstracts on Hygiene & Communicable Diseases, Academic Search, AgBiotech News & Information, AgBiotechNet, AGRICOLA Database, GeoRef, Global Health, SCOPUS, Weed Abstracts, and Reaction Citation Index, among others.
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