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首页> 外文期刊>Environmental microbiology >Ironing out the wrinkles in the rare biosphere through improved OTU clustering.
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Ironing out the wrinkles in the rare biosphere through improved OTU clustering.

机译:通过改善OTU群集来消除稀有生物圈中的皱纹。

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摘要

Deep sequencing of PCR amplicon libraries facilitates the detection of low-abundance populations in environmental DNA surveys of complex microbial communities. At the same time, deep sequencing can lead to overestimates of microbial diversity through the generation of low-frequency, error-prone reads. Even with sequencing error rates below 0.005 per nucleotide position, the common method of generating operational taxonomic units (OTUs) by multiple sequence alignment and complete-linkage clustering significantly increases the number of predicted OTUs and inflates richness estimates. We show that a 2% single-linkage preclustering methodology followed by an average-linkage clustering based on pairwise alignments more accurately predicts expected OTUs in both single and pooled template preparations of known taxonomic composition. This new clustering method can reduce the OTU richness in environmental samples by as much as 30-60% but does not reduce the fraction of OTUs in long-tailed rank abundance curves that defines the rare biosphere.
机译:PCR扩增子文库的深度测序有助于在复杂微生物群落的环境DNA调查中检测低丰度种群。同时,深度测序会通过产生容易出错的低频读数而导致对微生物多样性的高估。即使每个核苷酸位置的测序错误率低于0.005,通过多序列比对和完全链接聚类生成操作分类单位(OTU)的常用方法也显着增加了预测OTU的数量并夸大了丰富度估算值。我们显示2%的单链接预聚类方法,然后基于成对比对的平均链接聚类,可以更准确地预测已知分类学组成的单模板和合并模板制备中的预期OTU。这种新的聚类方法可以将环境样品中OTU的丰富度降低多达30-60%,但不会减少定义稀有生物圈的长尾秩丰度曲线中OTU的比例。

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