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Terracidiphilus gabretensis gen. nov., sp. nov., an Abundant and Active Forest Soil Acidobacterium Important in Organic Matter Transformation

机译:Terracidiphilus gabretensis gen。十一月,sp。十一月,对有机物转化非常重要的丰富而活跃的森林土壤酸杆菌

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Understanding the activity of bacteria in coniferous forests is highly important, due to the role of these environments as a global carbon sink. In a study of the microbial biodiversity of montane coniferous forest soil in the Bohemian Forest National Park (Czech Republic), we succeeded in isolating bacterial strain S55~(T), which belongs to one of the most abundant operational taxonomic units (OTUs) in active bacterial populations, according to the analysis of RNA-derived 16S rRNA amplicons. The 16S rRNA gene sequence analysis showed that the species most closely related to strain S55~(T) include Bryocella elongata SN10~(T) (95.4% identity), Acidicapsa ligni WH120~(T) (95.2% identity), and Telmatobacter bradus TPB6017~(T) (95.0% identity), revealing that strain S55~(T) should be classified within the phylum Acidobacteria , subdivision 1. Strain S55~(T) is a rod-like bacterium that grows at acidic pH (3 to 6). Its phylogenetic, genotypic, phenotypic, and chemotaxonomic characteristics indicate that strain S55~(T) corresponds to a new genus within the phylum Acidobacteria ; thus, we propose the name Terracidiphilus gabretensis gen. nov., sp. nov. (strain S55~(T) = NBRC 111238~(T) = CECT 8791~(T)). This strain produces extracellular enzymes implicated in the degradation of plant-derived biopolymers. Moreover, analysis of the genome sequence of strain S55~(T) also reveals the presence of enzymatic machinery required for organic matter decomposition. Soil metatranscriptomic analyses found 132 genes from strain S55~(T) being expressed in the forest soil, especially during winter. Our results suggest an important contribution of T. gabretensis S55~(T) in the carbon cycle in the Picea abies coniferous forest.
机译:由于这些环境作为全球碳汇的作用,了解针叶林中细菌的活性非常重要。在对捷克共和国波希米亚森林国家公园的山地针叶林土壤微生物多样性进行的研究中,我们成功分离出了S55〜(T)细菌菌株,该菌株属于该国最丰富的操作分类单位(OTU)之一。根据RNA衍生的16S rRNA扩增子的分析,发现活跃的细菌种群。 16S rRNA基因序列分析表明,与菌株S55〜(T)密切相关的物种包括长芽孢杆菌SN10〜(T)(同一性为95.4%),尖酸Acidicapsa ligni WH120〜(T)(同一性为95.2%)和布拉德氏杆菌TPB6017〜(T)(95.0%的同一性),表明菌株S55〜(T)应该归类为酸性细菌,细分为1。菌株S55〜(T)是一种杆状细菌,在酸性pH(3至6)。它的系统发育,基因型,表型和化学分类学特征表明菌株S55〜(T)对应于酸性嗜酸性菌门内的一个新属;因此,我们建议使用Terracidiphilus gabretensis gen这个名字。十一月,sp。十一月(应变S55〜(T)= NBRC 111238〜(T)= CECT 8791〜(T))。该菌株产生细胞外酶,涉及植物来源生物聚合物的降解。此外,对菌株S55-(T)的基因组序列的分析还揭示了有机物分解所需的酶机制的存在。土壤的转录组分析发现,S55〜(T)菌株中有132个基因在森林土壤中表达,尤其是在冬季。我们的结果表明,T。gabretensis S55〜(T)在云杉云杉针叶林碳循环中的重要贡献。

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