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Biodiversity assessments in the 21st century: the potential of insect traps to complement environmental samples for estimating eukaryotic and prokaryotic diversity using high-throughput DNA metabarcoding

机译:21世纪的生物多样性评估:昆虫疏水捕获的潜力,以使用高通量DNA地区估算真核生物和原核多样性的环境样本

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The rapid loss of biodiversity, coupled with difficulties in species identification, call for innovative approaches to assess biodiversity. Insects make up a substantial proportion of extant diversity and play fundamental roles in any given ecosystem. To complement morphological species identification, new techniques such as metabarcoding make it possible to quantify insect diversity and insect-ecosystem interactions through DNA sequencing. Here we examine the potential of bulk insect samples (i.e., containing many non-sorted specimens) to assess prokaryote and eukaryote biodiversity and to complement the taxonomic coverage of soil samples. We sampled 25 sites on three continents and in various ecosystems, collecting insects with SLAM traps (Brazil) and Malaise traps (South Africa and Sweden). We then compared our diversity estimates with the results obtained with biodiversity data from soil samples from the same localities. We found a largely different taxonomic composition between the soil and insect samples, testifying to the potential of bulk insect samples to complement soil samples. Finally, we found that non-destructive DNA extraction protocols, which preserve insect specimens for morphological studies, constitute a promising choice for cost-effective biodiversity assessments. We propose that the sampling and sequencing of insect samples should become a standard complement for biodiversity studies based on environmental DNA.
机译:生物多样性的快速丧失,加上物种识别困难,呼吁进行创新方法来评估生物多样性。昆虫在任何给定的生态系统中都占据了实质性多样性,并在任何给定的生态系统中发挥基本作用。为了补充形态物种鉴定,诸如沟通的新技术使得可以通过DNA测序量化昆虫多样性和昆虫 - 生态系统相互作用。在这里,我们检查散装昆虫样品(即,包含许多未分选标本)的潜力,以评估原核和真核生物多样性,并补充土壤样品的分类覆盖率。我们在三大洲和各种生态系统中采样了25个地点,用垃圾陷阱(巴西)和符号陷阱(南非和瑞典)收集昆虫。然后,我们将我们的多样性估计与来自相同地区的土壤样本的生物多样性数据获得的结果进行了比较。我们在土壤和昆虫样品之间发现了一个很大不同的分类分类组成,证明了散装昆虫样品的潜力来补充土壤样品。最后,我们发现不破坏性的DNA提取方案,其保护昆虫标本进行形态学研究,构成了具有成本效益的生物多样性评估的有希望的选择。我们建议昆虫样品的采样和测序应成为基于环境DNA的生物多样性研究的标准补充。

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