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Ecological influence of sediment bypass tunnels on macroinvertebrates in dam-fragmented rivers by DNA metabarcoding

机译:DNA地区泥土分段河流在大坝碎片河流上绕过隧道的生态影响

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Sediment bypass tunnels (SBTs) are guiding structures used to reduce sediment accumulation in reservoirs during high flows by transporting sediments to downstream reaches during operation. Previous studies monitoring the ecological effects of SBT operations on downstream reaches suggest a positive influence of SBTs on riverbed sediment conditions and macroinvertebrate communities based on traditional morphology-based surveys. Morphology-based macroinvertebrate assessments are costly and time-consuming, and the large number of morphologically cryptic, small-sized and undescribed species usually results in coarse taxonomic identification. Here, we used DNA metabarcoding analysis to assess the influence of SBT operations on macroinvertebrates downstream of SBT outlets by estimating species diversity and pairwise community dissimilarity between upstream and downstream locations in dam-fragmented rivers with operational SBTs in comparison to dam-fragmented (i.e., no SBTs) and free-flowing rivers (i.e., no dam). We found that macroinvertebrate community dissimilarity decreases with increasing operation time and frequency of SBTs. These factors of SBT operation influence changes in riverbed features, e.g. sediment relations, that subsequently effect the recovery of downstream macroinvertebrate communities to their respective upstream communities. Macroinvertebrate abundance using morphologically-identified specimens was positively correlated to read abundance using metabarcoding. This supports and reinforces the use of quantitative estimates for diversity analysis with metabarcoding data.
机译:沉积物旁通隧道(SBT)是通过在操作期间通过将沉积物传输到下游来减少高流动期间储存器中沉积物积累的引导结构。以前的研究监测SBT操作对下游达到的生态影响表明SBT对基于传统形态学的调查的河床沉积物条件和大型脊椎动物群落的积极影响。基于形态学的大型大型门诊评估是昂贵且耗时的,并且大量的形态神秘的神秘性,小小的和未描述的物种通常导致粗大的分类鉴定。在这里,我们使用DNA地区沟通分析来评估SBT操作通过估算坝分散河流在坝分割河流的上游和下游位置之间的物种多样性和成对群落不同,与坝碎裂相比(即,没有SBT)和自由流动的河流(即没有大坝)。我们发现,Macroinvertebrete群落不同随着SBT的操作时间和频率的增加而降低。 SBT操作的这些因素影响河床特征的变化,例如,沉积物关系,随后影响下游大型近区社区的恢复到各自的上游社区。使用形态学鉴定的标本的大型脊椎动物丰度与使用成立的读取丰度呈正相关。这种支持和强化使用Metabarcoding数据使用定量估计进行分集分析。

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