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首页> 外文期刊>Applied and Environmental Microbiology >New Group in the Leptospirillum Clade: Cultivation-Independent Community Genomics, Proteomics, and Transcriptomics of the New Species “Leptospirillum Group IV UBA BS”
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New Group in the Leptospirillum Clade: Cultivation-Independent Community Genomics, Proteomics, and Transcriptomics of the New Species “Leptospirillum Group IV UBA BS”

机译:钩端螺旋体进化枝中的新群体:新物种“钩端螺旋体IVB UBA BS”的不依赖培养的社区基因组学,蛋白质组学和转录组学

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Leptospirillum spp. are widespread members of acidophilic microbial communities that catalyze ferrous iron oxidation, thereby increasing sulfide mineral dissolution rates. These bacteria play important roles in environmental acidification and are harnessed for bioleaching-based metal recovery. Known members of the Leptospirillum clade of the Nitrospira phylum are Leptospirillum ferrooxidans (group I), Leptospirillum ferriphilum and “Leptospirillum rubarum” (group II), and Leptospirillum ferrodiazotrophum (group III). In the Richmond Mine acid mine drainage (AMD) system, biofilm formation is initiated by L. rubarum; L. ferrodiazotrophum appears in later developmental stages. Here we used community metagenomic data from unusual, thick floating biofilms to identify distinguishing metabolic traits in a rare and uncultivated community member, the new species “Leptospirillum group IV UBA BS.” These biofilms typically also contain a variety of Archaea, Actinobacteria, and a few other Leptospirillum spp. The Leptospirillum group IV UBA BS species shares 98% 16S rRNA sequence identity and 70% average amino acid identity between orthologs with its closest relative, L. ferrodiazotrophum. The presence of nitrogen fixation and reverse tricarboxylic acid (TCA) cycle proteins suggest an autotrophic metabolism similar to that of L. ferrodiazotrophum, while hydrogenase proteins suggest anaerobic metabolism. Community transcriptomic and proteomic analyses demonstrate expression of a multicopper oxidase unique to this species, as well as hydrogenases and core metabolic genes. Results suggest that the Leptospirillum group IV UBA BS species might play important roles in carbon fixation, nitrogen fixation, hydrogen metabolism, and iron oxidation in some acidic environments.
机译:钩端螺旋体是嗜酸性微生物群落的广泛成员,可催化亚铁氧化,从而提高硫化物矿物的溶解速率。这些细菌在环境酸化中起重要作用,并被用于基于生物浸出的金属回收。硝化螺旋体的钩端螺旋体进化支的已知成员是氧化亚铁螺旋体(I组),费氏钩端螺旋体和“鲁氏细螺旋体”(II组)和重氮根尖螺旋体(III组)。在里士满矿山酸性矿井排水系统中,生物膜的形成是由鲁氏乳杆菌引起的。铁重氮营养菌出现在发育后期。在这里,我们使用了来自异常,厚实的漂浮生物膜的社区宏基因组学数据,以识别罕见且未经训练的社区成员新物种“ Leptospirillum group IV UBA BS”的独特代谢特征。这些生物膜通常还包含各种古细菌,放线菌和其他一些钩端螺旋体。钩端螺旋体第四类UBA BS物种在与其最亲近的铁二氮菌属的直系同源物之间共有98%的16S rRNA序列同一性和70%的平均氨基酸同一性。固氮和反向三羧酸(TCA)循环蛋白的存在表明自养代谢类似于铁二氮营养细菌,而氢化酶蛋白则表明厌氧代谢。社区转录组学和蛋白质组学分析表明,该物种独特的多铜氧化酶以及氢化酶和核心代谢基因的表达。结果表明,在某些酸性环境中,第四类钩端螺旋体UBA BS物种可能在碳固定,氮固定,氢代谢和铁氧化中起重要作用。

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