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首页> 外文期刊>Environmental microbiology >Complete genome of a new Firmicutes species belonging to the dominant human colonic microbiota (‘Ruminococcus bicirculans’) reveals two chromosomes and a selective capacity to utilize plant glucans
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Complete genome of a new Firmicutes species belonging to the dominant human colonic microbiota (‘Ruminococcus bicirculans’) reveals two chromosomes and a selective capacity to utilize plant glucans

机译:属于人类主要结肠菌群(“ Ruminococcus bicirculans”)的新的Firmicutes物种的完整基因组揭示了两条染色体和利用植物葡聚糖的选择性能力

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The recently isolated bacterial strain 80/3 represents one of the most abundant 16S rRNA phylotypes detected in the healthy human large intestine and belongs to the Ruminococcaceae family of Firmicutes. The completed genome sequence reported here is the first for a member of this important family of bacteria from the human colon. The genome comprises two large chromosomes of 2.24 and 0.73 Mbp, leading us to propose the name Ruminococcus bicirculans for this new species. Analysis of the carbohydrate active enzyme complement suggests an ability to utilize certain hemicelluloses, especially β-glucans and xyloglucan, for growth that was confirmed experimentally. The enzymatic machinery enabling the degradation of cellulose and xylan by related cellulolytic ruminococci is however lacking in this species. While the genome indicated the capacity to synthesize purines, pyrimidines and all 20 amino acids, only genes for the synthesis of nicotinate, NAD+, NADP+ and coenzyme A were detected among the essential vitamins and co-factors, resulting in multiple growth requirements. In vivo, these growth factors must be supplied from the diet, host or other gut microorganisms. Other features of ecological interest include two type IV pilins, multiple extracytoplasmic function-sigma factors, a urease and a bile salt hydrolase.
机译:最近分离出的细菌菌株80/3代表了在健康人的大肠中检测到的最丰富的16S rRNA系统型之一,并且属于Firmicutes的Ruminococcaceae家族。此处报道的完整基因组序列是该人类结肠中重要细菌家族成员的第一个序列。该基因组包含两个分别为2.24和0.73 Mbp的大染色体,这使我们对这个新物种提出了双圆球状球菌的名称。对碳水化合物活性酶补体的分析表明,有能力利用某些半纤维素,尤其是β-葡聚糖和木葡聚糖来促进生长,这一点已通过实验证实。然而,在该物种中缺少能够通过相关的纤维素分解瘤胃球菌降解纤维素和木聚糖的酶促机制。尽管基因组显示了合成嘌呤,嘧啶和所有20个氨基酸的能力,但在必需的维生素和辅因子中仅检测到了烟酸,NAD +,NADP +和辅酶A的合成基因,导致多种生长需求。在体内,这些生长因子必须由饮食,宿主或其他肠道微生物提供。具有生态价值的其他特征还包括两个IV型菌毛蛋白,多个胞浆外功能因子,尿素酶和胆盐水解酶。

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