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The effect of tides on nearshore environmental DNA

机译:潮汐对近岸环境DNA的影响

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摘要

We can recover genetic information from organisms of all kinds using environmental sampling. In recent years, sequencing this environmental DNA (eDNA) has become a tractable means of surveying many species using water, air, or soil samples. The technique is beginning to become a core tool for ecologists, environmental scientists, and biologists of many kinds, but the temporal resolution of eDNA sampling is often unclear, limiting the ecological interpretations of the resulting datasets. Here, in a temporally and spatially replicated field study using ca. 313 bp of eukaryotic COI mtDNA as a marker, we find that nearshore organismal communities are largely consistent across tides. Our findings suggest that nearshore eDNA from both benthic and planktonic taxa tends to be endogenous to the site and water mass sampled, rather than changing with each tidal cycle. However, where physiochemical water mass characteristics change, we find that the relative contributions of a broad range of organisms to eDNA communities shift in concert.
机译:我们可以使用环境采样从各种生物中恢复遗传信息。近年来,对这种环境DNA(eDNA)进行测序已成为使用水,空气或土壤样品调查许多物种的简便方法。该技术已开始成为许多生态学家,环境科学家和生物学家的核心工具,但是eDNA采样的时间分辨率通常不清楚,从而限制了所得数据集的生态学解释。在这里,在使用ca的时空复制实地研究中。 313 bp的真核COI mtDNA作为标记,我们发现潮汐附近的近岸生物群落在很大程度上是一致的。我们的发现表明,来自底栖生物和浮游生物分类单元的近岸eDNA往往是采样地点和水质的内源性,而不是随每个潮汐周期而变化。但是,在理化水质量特征发生变化的地方,我们发现各种各样的生物体对eDNA群落的相对贡献会同步变化。

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