Jessica Rieder, Eliane Jemmi, Margaret E. Hunter, Irene Adrian-Kalchhauser
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The primary objective of this paper is to enable scientists with an ecological background and limited molecular training to understand the four key steps of eDNA isolations, and to use this expertise to their advantage. We describe the purpose of commonly used reagents and chemicals, point out alternatives for each key step, explain the impact of certain choices regarding isolation approaches on DNA integrity and purity, and highlight the possibility of a tailor-made “mix and match” approach. We anticipate that this paper will enable field ecologists to develop a deeper understanding of the mechanisms and chemistry underlying eDNA extractions, thus allowing them to make informed decisions regarding the best eDNA extraction method for their research goals. Our intention is not to provide comprehensive, step-by-step protocols, but to offer guiding principles while highlighting alternative solutions. 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We anticipate that this paper will enable field ecologists to develop a deeper understanding of the mechanisms and chemistry underlying eDNA extractions, thus allowing them to make informed decisions regarding the best eDNA extraction method for their research goals. Our intention is not to provide comprehensive, step-by-step protocols, but to offer guiding principles while highlighting alternative solutions. 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引用次数: 0
摘要
生态学家、生物学家和自然保护科学家对利用环境 DNA(eDNA)数据进行研究和潜在决策越来越感兴趣。虽然商用 DNA 提取试剂盒通常方便易用,但对于本身就很复杂的 eDNA 样品,它们可能无法提供理想的结果,这就需要对方案进行优化或有针对性地选择替代方法。为此,了解 DNA 提取的基本步骤和原理至关重要,但传统的生态学、自然保护和环境管理教育通常不包括分子方法方面的深入培训。本文的主要目的是让具有生态学背景但接受过有限分子培训的科学家了解 eDNA 分离的四个关键步骤,并利用这些专业知识为自己服务。我们介绍了常用试剂和化学品的用途,指出了每个关键步骤的替代方法,解释了某些分离方法的选择对 DNA 完整性和纯度的影响,并强调了定制 "混合与匹配 "方法的可能性。我们希望这篇论文能让野外生态学家更深入地了解 eDNA 提取的机制和化学原理,从而使他们能够根据自己的研究目标,就最佳的 eDNA 提取方法做出明智的决定。我们的目的不是提供全面的、按部就班的规程,而是提供指导原则,同时强调可供选择的解决方案。最后,我们希望本文能成为支持知识传播和教学的有用资源。
A Guide to Environmental DNA Extractions for Non-Molecular Trained Biologists, Ecologists, and Conservation Scientists
Ecologists, biologists, and conservation scientists are increasingly interested in the use of environmental DNA (eDNA) data for research and potentially decision-making. While commercial DNA extraction kits are typically user-friendly and accessible, they may fail to deliver the desired results with inherently complex eDNA samples, necessitating protocol optimization or educated selection of alternative approaches. To this end, knowledge of the basic steps and principles of DNA extractions is essential, but traditional education tracks in ecology, conservation, and environmental management typically do not include in-depth training in molecular methods. The primary objective of this paper is to enable scientists with an ecological background and limited molecular training to understand the four key steps of eDNA isolations, and to use this expertise to their advantage. We describe the purpose of commonly used reagents and chemicals, point out alternatives for each key step, explain the impact of certain choices regarding isolation approaches on DNA integrity and purity, and highlight the possibility of a tailor-made “mix and match” approach. We anticipate that this paper will enable field ecologists to develop a deeper understanding of the mechanisms and chemistry underlying eDNA extractions, thus allowing them to make informed decisions regarding the best eDNA extraction method for their research goals. Our intention is not to provide comprehensive, step-by-step protocols, but to offer guiding principles while highlighting alternative solutions. Finally, we hope that this paper will act as a useful resource to support knowledge transfer and teaching.