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Taxonomic and Functional Compositions Impacted by the Quality of Metatranscriptomic Assemblies

机译:受转录组学质量影响的分类和功能组成

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摘要

Metatranscriptomics has recently been applied to investigate the active biogeochemical processes and elemental cycles, and in situ responses of microbiomes to environmental stimuli and stress factors. De novo assembly of RNA-Sequencing (RNA-Seq) data can reveal a more detailed description of the metabolic interactions amongst the active microbial communities. However, the quality of the assemblies and the depiction of the metabolic network provided by various de novo assemblers have not yet been thoroughly assessed. In this study, we compared 15 de novo metatranscriptomic assemblies for a fracture fluid sample collected from a borehole located at 1.34 km below land surface in a South African gold mine. These assemblies were constructed from total, non-coding, and coding reads using five de novo transcriptomic assemblers (Trans-ABySS, Trinity, Oases, IDBA-tran, and Rockhopper). They were evaluated based on the number of transcripts, transcript length, range of transcript coverage, continuity, percentage of transcripts with confident annotation assignments, as well as taxonomic and functional diversity patterns. The results showed that these parameters varied considerably among the assemblies, with Trans-ABySS and Trinity generating the best assemblies for non-coding and coding RNA reads, respectively, because the high number of transcripts assembled covered a wide expression range, and captured extensively the taxonomic and metabolic gene diversity, respectively. We concluded that the choice of de novo transcriptomic assemblers impacts substantially the taxonomic and functional compositions. Care should be taken to obtain high-quality assemblies for informing the in situ metabolic landscape.
机译:元转录组学最近已被用于研究活跃的生物地球化学过程和元素周期,以及微生物组对环境刺激和压力因素的原位响应。从头开始组装RNA测序(RNA-Seq)数据可以揭示活性微生物群落之间代谢相互作用的更详细描述。然而,各种从头组装商提供的组装质量和代谢网络的描述尚未得到全面评估。在这项研究中,我们比较了从南非金矿中位于地表以下1.34 km的一个钻孔中收集的裂缝流体样本的15个从头转录组。这些程序集使用五个从头转录组汇编程序(Trans-ABySS,Trinity,Oases,IDBA-tran和Rockhopper)从总的,非编码和编码读取中构建而成。根据成绩单的数量,成绩单的长度,成绩单的覆盖范围,连续性,自信的注释分配成绩单的百分比以及分类和功能多样性模式对他们进行了评估。结果表明,这些参数在程序集之间存在很大差异,Trans-ABySS和Trinity分别为非编码和编码RNA读取生成了最佳程序集,因为组装的大量转录物覆盖了广泛的表达范围,并被广泛捕获。分类学和代谢基因多样性。我们得出的结论是,从头转录组学组装者的选择会大大影响分类和功能组成。应该注意获取高质量的程序集,以告知原位代谢情况。

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