首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Resolution of habitat-associated ecogenomic signatures in bacteriophage genomes and application to microbial source tracking
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Resolution of habitat-associated ecogenomic signatures in bacteriophage genomes and application to microbial source tracking

机译:在噬菌体基因组中分辨栖息地相关的生遗传学特征及其在微生物源跟踪中的应用

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摘要

Just as the expansion in genome sequencing has revealed and permitted the exploitation of phylogenetic signals embedded in bacterial genomes, the application of metagenomics has begun to provide similar insights at the ecosystem level for microbial communities. However, little is known regarding this aspect of bacteriophage associated with microbial ecosystems, and if phage encode discernible habitat-associated signals diagnostic of underlying microbiomes. Here we demonstrate that individual phage can encode clear habitat-related 'ecogenomic signatures', based on relative representation of phage-encoded gene homologues in metagenomic data sets. Furthermore, we show the ecogenomic signature encoded by the gut-associated phi B124-14 can be used to segregate metagenomes according to environmental origin, and distinguish 'contaminated' environmental metagenomes (subject to simulated in silico human faecal pollution) from uncontaminated data sets. This indicates phage-encoded ecological signals likely possess sufficient discriminatory power for use in biotechnological applications, such as development of microbial source tracking tools for monitoring water quality.
机译:正如基因组测序的扩张所揭示并允许嵌入细菌基因组中的系统发育信号的开发一样,偏见组织的应用已经开始为微生物群落的生态系统水平提供类似的见解。然而,关于与微生物生态系统相关的噬菌体的这一方面,并​​且如果噬菌体编码可辨别的栖息地相关信号诊断的潜在微生物瘤的这种方面毫无少。在这里,我们证明各种噬菌体可以基于噬菌体数据集中噬菌体编码基因同源物的相对表示来编码清晰的栖息地相关的“生遗传学签名”。此外,我们显示肠道相关的PHI B124-14编码的生桂签名可用于根据环境来源地分离梅曲线,并区分“受污染的”环境梅毒(受硅粪便污染的模拟)免受未污染的数据集。这表明噬菌体编码的生态信号可能具有足够的歧视性,用于生物技术应用,例如用于监测水质的微生物源跟踪工具的开发。

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