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CLAME: a new alignment-based binning algorithm allows the genomic description of a novel Xanthomonadaceae from the Colombian Andes

机译:剔除:一种新的基于对齐的分子算法允许从哥伦比亚和哥伦比亚人的新Xanthomonadaceae进行基因组描述

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摘要

Abstract Background Hot spring bacteria have unique biological adaptations to survive the extreme conditions of these environments; these bacteria produce thermostable enzymes that can be used in biotechnological and industrial applications. However, sequencing these bacteria is complex, since it is not possible to culture them. As an alternative, genome shotgun sequencing of whole microbial communities can be used. The problem is that the classification of sequences within a metagenomic dataset is very challenging particularly when they include unknown microorganisms since they lack genomic reference. We failed to recover a bacterium genome from a hot spring metagenome using the available software tools, so we develop a new tool that allowed us to recover most of this genome. Results We present a proteobacteria draft genome reconstructed from a Colombian’s Andes hot spring metagenome. The genome seems to be from a new lineage within the family Rhodanobacteraceae of the class Gammaproteobacteria, closely related to the genus Dokdonella. We were able to generate this genome thanks to CLAME. CLAME, from Spanish “CLAsificador MEtagenomico”, is a tool to group reads in bins. We show that most reads from each bin belong to a single chromosome. CLAME is very effective recovering most of the reads belonging to the predominant species within a metagenome. Conclusions We developed a tool that can be used to extract genomes (or parts of them) from a complex metagenome.
机译:摘要背景热弹簧细菌具有独特的生物适应,以存活这些环境的极端条件;这些细菌产生可用于生物技术和工业应用的热稳定酶。然而,这些细菌的测序是复杂的,因为它不可能培养它们。作为替代方案,可以使用全部微生物群落的基因组霰弹枪测序。问题是,在缺乏基因组参考的情况下,特征当它们包括未知的微生物时,序列组数据集中的序列的分类非常具有挑战性。我们未能使用可用的软件工具从热弹簧Metagenome中恢复细菌基因组,因此我们开发了一种新工具,使我们能够恢复大部分基因组。结果我们提出了从哥伦比亚的南斯和温泉赛马群中重建的基因组草案草案。该基因组似乎是来自古曲霉菌的家族Rhodanocacteraceae内的新谱系,与Dokdonella属密切相关。由于污垢,我们能够产生这种基因组。来自西班牙语“Clasificador Metagenomico”的污垢是组合在垃圾箱中的工具。我们表明,每个垃圾箱的大多数读数都属于一个染色体。污垢非常有效地恢复属于梅塔群中的主要物种的大多数读数。结论我们开发了一种工具,可用于从复杂的MetageNome中提取基因组(或其部分)。

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