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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Captured metagenomics: large-scale targeting of genes based on 'sequence capture' reveals functional diversity in soils
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Captured metagenomics: large-scale targeting of genes based on 'sequence capture' reveals functional diversity in soils

机译:捕获的宏基因组学:基于“序列捕获”的基因大规模靶向揭示了土壤中的功能多样性

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摘要

Microbial enzyme diversity is a key to understand many ecosystem processes. Whole metagenome sequencing (WMG) obtains information on functional genes, but it is costly and inefficient due to large amount of sequencing that is required. In this study, we have applied a captured metagenomics technique for functional genes in soil microorganisms, as an alternative to WMG. Large-scale targeting of functional genes, coding for enzymes related to organic matter degradation, was applied to two agricultural soil communities through captured metagenomics. Captured metagenomics uses custom-designed, hybridization-based oligonucleotide probes that enrich functional genes of interest in metagenomic libraries where only probe-bound DNA fragments are sequenced. The captured metagenomes were highly enriched with targeted genes while maintaining their target diversity and their taxonomic distribution correlated well with the traditional ribosomal sequencing. The captured metagenomes were highly enriched with genes related to organic matter degradation; at least five times more than similar, publicly available soil WMG projects. This target enrichment technique also preserves the functional representation of the soils, thereby facilitating comparative metagenomics projects. Here, we present the first study that applies the captured metagenomics approach in large scale, and this novel method allows deep investigations of central ecosystem processes by studying functional gene abundances.
机译:微生物酶多样性是了解许多生态系统过程的关键。全基因组测序(WMG)可获取有关功能基因的信息,但由于需要大量测序,因此成本高昂且效率低下。在这项研究中,我们将捕获的宏基因组学技术应用于土壤微生物中的功能基因,以替代WMG。通过捕获的宏基因组学将功能基因的大规模靶向编码了与有机物降解相关的酶,并将其应用于两个农业土壤群落。捕获的宏基因组学使用定制设计的基于杂交的寡核苷酸探针,该探针可在宏基因组文库中丰富感兴趣的功能基因,在宏基因组文库中仅对探针结合的DNA片段进行测序。捕获的元基因组高度富含靶基因,同时保持了靶标多样性,并且其分类学分布与传统核糖体测序很好地相关。捕获的基因组中富含与有机物降解相关的基因。至少是公开的类似土壤WMG项目的五倍。这种目标富集技术还保留了土壤的功能性代表,从而促进了比较宏基因组计划。在这里,我们提出了第一个大规模应用捕获的宏基因组学方法的研究,这种新方法通过研究功能基因丰度,可以对中央生态系统过程进行深入研究。

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