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Single-cell genomics of uncultivated deep-branching magnetotactic bacteria reveals a conserved set of magnetosome genes

机译:未培养的深分支趋磁细菌的单细胞基因组学揭示了一组保守的磁小体基因

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摘要

While magnetosome biosynthesis within the magnetotactic Proteobacteria is increasingly well understood, much less is known about the genetic control within deep-branching phyla, which have a unique ultrastructure and biosynthesize up to several hundreds of bullet-shaped magnetite magnetosomes arranged in multiple bundles of chains, but have no cultured representatives. Recent metagenomic analysis identified magnetosome genes in the genus 'Candidatus Magnetobacterium' homologous to those in Proteobacteria. However, metagenomic analysis has been limited to highly abundant members of the community, and therefore only little is known about the magnetosome biosynthesis, ecophysiology and metabolic capacity in deep-branching MTB. Here we report the analysis of single-cell derived draft genomes of three deep-branching uncultivated MTB. Single-cell sorting followed by whole genome amplification generated draft genomes of Candidatus Magnetobacterium bavaricum and Candidatus Magnetoovum chiemensis CS-04 of the Nitrospirae phylum. Furthermore, we present the first, nearly complete draft genome of a magnetotactic representative from the candidate phylum Omnitrophica, tentatively named Candidatus Omnitrophus magneticus SKK-01. Besides key metabolic features consistent with a common chemolithoautotrophic lifestyle, we identified numerous, partly novel genes most likely involved in magnetosome biosynthesis of bullet-shaped magnetosomes and their arrangement in multiple bundles of chains.
机译:趋磁变形杆菌中的磁小体生物合成已得到越来越多的了解,但对于深分支门内的遗传控制了解甚少,后者具有独特的超微结构,并可以生物合成多达数百个子弹状的磁铁矿磁小体,它们排列成多束链,但没有文化代表。最近的宏基因组学分析确定了'Candidatus Magnetobacterium'属中的磁小体基因与Proteobacteria中的那些同源。但是,宏基因组学分析仅限于社区中高度丰富的成员,因此,对于深支MTB中的磁小体生物合成,生态生理和代谢能力知之甚少。在这里,我们报告的三个深分支未培养的MTB单细胞衍生的草案基因组的分析。单细胞分选,然后进行全基因组扩增,产生了Nitrospirae phylum的巴氏念珠菌和Chiemidatus Magnetoovum chiemensis CS-04基因组草图。此外,我们提出了来自候选门总营养动物的趋磁代表的第一个几乎完整的基因组图,暂定名为Candidatus Omnitrophus magneticus SKK-01。除了符合常见的化石自养生物生活方式的关键代谢特征外,我们还鉴定了许多最可能参与子弹形磁小体的磁小体生物合成及其在多束链中的排列的部分新基因。

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