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Environmental DNA metabarcoding : Transforming how we survey animal and plant communities

机译:环境DNA元条形码:改变我们调查动植物群落的方式

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摘要

The genomic revolution has fundamentally changed how we survey biodiversity on earth. High-throughput sequencing (?HTS?) platforms now enable the rapid sequencing of DNA from diverse kinds of environmental samples (termed ?environmental DNA? or ?eDNA?). Coupling HTS with our ability to associate sequences from eDNA with a taxonomic name is called ?eDNA metabarcoding? and offers a powerful molecular tool capable of noninvasively surveying species richness from many ecosystems. Here, we review the use of eDNA metabarcoding for surveying animal and plant richness, and the challenges in using eDNA approaches to estimate relative abundance. We highlight eDNA applications in freshwater, marine and terrestrial environments, and in this broad context, we distill what is known about the ability of different eDNA sample types to approximate richness in space and across time. We provide guiding questions for study design and discuss the eDNA metabarcoding workflow with a focus on primers and library preparation methods. We additionally discuss important criteria for consideration of bioinformatic filtering of data sets, with recommendations for increasing transparency. Finally, looking to the future, we discuss emerging applications of eDNA metabarcoding in ecology, conservation, invasion biology, biomonitoring, and how eDNA metabarcoding can empower citizen science and biodiversity education
机译:基因组革命从根本上改变了我们调查地球生物多样性的方式。现在,高通量测序(?HTS?)平台可以对来自各种环境样品(称为“环境DNA”或“ eDNA”)的DNA进行快速测序。将HTS与我们将来自eDNA的序列与生物分类名称关联的能力结合在一起称为“ eDNA metabarcoding”。并提供了强大的分子工具,能够无创地调查许多生态系统的物种丰富度。在这里,我们回顾了使用eDNA metabarcoding来调查动物和植物的丰富度,以及使用eDNA方法估算相对丰度时所面临的挑战。我们着重介绍了eDNA在淡水,海洋和陆地环境中的应用,在此广阔的背景下,我们提取了有关不同eDNA样本类型逼近空间和跨时间丰富度的能力的已知知识。我们为研究设计提供指导性问题,并讨论eDNA元条形码工作流程,重点是引物和文库制备方法。我们还将讨论考虑数据集生物信息过滤的重要标准,并建议增加透明度。最后,展望未来,我们讨论了eDNA元条形码在生态,保护,入侵生物学,生物监测中的新兴应用,以及eDNA元条形码如何能够增强公民科学和生物多样性教育

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