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首页> 外文期刊>Amphibia-reptilia: Publication of the Societas Europaea Herpetologica >Environmental DNA and metabarcoding for the study of amphibians and reptiles: species distribution, the microbiome, and much more
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Environmental DNA and metabarcoding for the study of amphibians and reptiles: species distribution, the microbiome, and much more

机译:对两栖动物和爬行动物研究的环境DNA和沟通:物种分布,微生物组等等

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摘要

In the last decade, eDNA and metabarcoding have opened new avenues to biodiversity studies; amphibians and reptiles are animals for which these new approaches have allowed great leaps forward. Here we review different approaches through which eDNA can be used to study amphibians, reptiles and many more organisms. eDNA is often used to evaluate the presence of target species in freshwaters; it has been particularly useful to detect invasive alien amphibians and secretive or rare species, but the metabarcoding approach is increasingly used as a cost- effective approach to assess entire communities. There is growing evidence that eDNA can be also useful to study terrestrial organisms, to evaluate the relative abundance of species, and to detect reptiles. Metabarcoding has also revolutionized studies on the microbiome associated to skin and gut, clarifying the complex relationships between pathogens, microbial diversity and environmental variation. We also identify additional aspects that have received limited attention so far, but can greatly benefit from innovative applications of eDNA, such as the study of past biodiversity, diet analysis and the reconstruction of trophic interactions. Despite impressive potential, eDNA and metabarcoding also bear substantial technical and analytical complexity; we identify laboratory and analytical strategies that can improve the robustness of results. Collaboration among field biologists, ecologist, molecular biologists, and bioinformaticians is allowing fast technical and conceptual advances; multidisciplinary studies involving eDNA analyses will greatly improve our understanding of the complex relationships between organisms, and our effectiveness in assessing and preventing the impact of human activities.
机译:在过去的十年中,埃德纳和地区都开辟了新的途径到生物多样性研究;两栖动物和爬行动物是这些新方法所允许的动物前进的动物。在这里,我们审查了不同的方法,通过该方法可以用于研究两栖动物,爬行动物和更多的生物。 edna通常用于评估新温水中靶种的存在;检测侵入性外来两栖动物和秘密或稀有物种特别有用,但元成立方法越来越多地用作评估整个社区的成本效益的方法。越来越多的证据表明EDNA也可以有助于研究陆生物体,以评估物种的相对丰富,并检测爬行动物。 Metabarcoding还彻底改变了与皮肤和肠道相关的微生物组,阐明了病原体,微生物多样性和环境变异之间的复杂关系。我们还确定了到目前为止收到有限的关注的其他方面,但可以从EDNA的创新应用中受益匪浅,例如过去的生物多样性,饮食分析和营养互动的重建的研究。尽管令人印象深刻的潜力,EDNA和Metabarcoding也承担了实质性的技术和分析复杂性;我们确定了可以提高结果稳健性的实验室和分析策略。现场生物学家,生态学家,分子生物学家和生物信息管理人员之间的合作允许快速的技术和概念性进展;涉及edna分析的多学科研究将大大提高我们对生物之间复杂关系的理解,以及我们在评估和预防人类活动的影响方面的有效性。

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