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首页> 外文期刊>Frontiers in Marine Science >Genetic and Manual Survey Methods Yield Different and Complementary Views of an Ecosystem
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Genetic and Manual Survey Methods Yield Different and Complementary Views of an Ecosystem

机译:遗传和人工调查方法产生生态系统的不同观点和互补观点

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Given the rapid rise of environmental DNA (eDNA) surveys in ecology and environmental science, it is important to be able to compare the results of these surveys to traditional methods of measuring biodiversity. Here we compare samples from a traditional method (a manual tow-net) to companion eDNA samples sequenced at three different genetic loci. We find only partial taxonomic overlap among the resulting datasets, with each reflecting a portion of the larger suite of taxa present in the sampled nearshore marine environment. In the larger context of eDNA sequencing surveys, our results suggest that primer amplification bias drives much of the taxonomic bias in eDNA detection, and that the baseline probability of detecting any given taxon with a broad-spectrum primer set is likely to be low. Whether catching fish with different nets or using different PCR primer sets, multiple data types can provide complementary views of a common ecosystem. However, it remains difficult to cross-validate eDNA sequencing techniques in the field, either for presence/absence or for abundance, particularly for primer sets that target very wide taxonomic ranges. Finally, our results highlight the breadth of diversity in a single habitat, and although eDNA does capture a richer sample of the community than traditional methods of sampling, a large number of eDNA primer sets focusing on different subsets of the biota would be necessary to survey any ecological community in a reasonably comprehensive way.
机译:鉴于生态和环境科学领域中环境DNA(eDNA)调查的迅速增长,重要的是能够将这些调查的结果与测量生物多样性的传统方法进行比较。在这里,我们将来自传统方法(手动拖网)的样本与在三个不同遗传基因座处测序的伴随eDNA样本进行比较。我们发现所得数据集之间仅部分分类学重叠,每个数据集都反映了采样近海海洋环境中存在的较大分类群的一部分。在更大范围的eDNA测序调查中,我们的结果表明,引物扩增的偏倚驱动了eDNA检测中的大部分分类学偏向,并且使用广谱引物组检测任何给定分类群的基线概率可能很低。无论是使用不同的网捕捞鱼还是使用不同的PCR引物组,多种数据类型都可以提供共同生态系统的互补视图。然而,无论是存在/不存在或丰度,尤其是针对靶向非常广泛的生物分类学范围的引物组,仍然难以在本领域交叉验证eDNA测序技术。最后,我们的结果强调了单一栖息地多样性的广度,尽管eDNA的确比传统采样方法捕获了更丰富的社区样本,但有必要对大量专注于生物群不同子集的eDNA引物进行调查任何生态社区都以合理全面的方式进行。

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