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从中国四川甘孜温泉中分离出的一个新物种——[具体物种名]sp. nov.的描述、分类学及比较基因组学

Description, Taxonomy, and Comparative Genomics of a Novel species, sp. nov., Isolated From Hot Springs of Ganzi, Sichuan, China.

作者信息

Tang Jie, Li Liheng, Li Meijin, Du Lianming, Shah Md Mahfuzur R, Waleron Michal M, Waleron Malgorzata, Waleron Krzysztof F, Daroch Maurycy

机构信息

Antibiotics Research and Re-evaluation Key Laboratory of Sichuan Province, Sichuan Industrial Institute of Antibiotics, Chengdu University, Chengdu, China.

School of Environment and Energy, Peking University Shenzhen Graduate School, Shenzhen, China.

出版信息

Front Microbiol. 2021 Sep 10;12:696102. doi: 10.3389/fmicb.2021.696102. eCollection 2021.

Abstract

Thermoleptolyngbya is a newly proposed genus of thermophilic cyanobacteria that are often abundant in thermal environments. However, a vast majority of strains were not systematically identified, and genomic features of this genus are also sparse. Here, polyphasic approaches were employed to identify a thermophilic strain, PKUAC-SCTA183 (A183 hereafter), isolated from hot spring Erdaoqiao, Ganzi prefecture, China. Whole-genome sequencing of the strain revealed its allocation to sp. and genetic adaptations to the hot spring environment. While the results of 16S rRNA were deemed inconclusive, the more comprehensive polyphasic approach encompassing phenetic, chemotaxic, and genomic approaches strongly suggest that a new taxon, sp. nov., should be delineated around the A183 strain. The genome-scale phylogeny and average nucleotide/amino-acid identity confirmed the genetic divergence of the A183 strain from other strains of along with traditional methods such as 16S-23S ITS and its secondary structure analyses. Comparative genomic and phylogenomic analyses revealed inconsistent genome structures between A183 and O-77 strains. Further gene ontology analysis showed that the unique genes of the two strains were distributed in a wide range of functional categories. In addition, analysis of genes related to thermotolerance, signal transduction, and carbon/nitrogen/sulfur assimilation revealed the ability of this strain to adapt to inhospitable niches in hot springs, and these findings were preliminarily confirmed using experimental, cultivation-based approaches.

摘要

嗜热聚球藻是一个新提出的嗜热蓝细菌属,在热环境中通常数量丰富。然而,绝大多数菌株尚未得到系统鉴定,该属的基因组特征也很稀少。在这里,我们采用多相方法鉴定了一株从中国甘孜州二道桥温泉分离出的嗜热菌株PKUAC-SCTA183(以下简称A183)。该菌株的全基因组测序揭示了其属于 种,并发现了其对温泉环境的遗传适应性。虽然16S rRNA的结果被认为没有定论,但包括表型、化学分类和基因组方法在内的更全面的多相方法强烈表明,应围绕A183菌株划定一个新的分类单元,即 新种。基因组规模的系统发育以及平均核苷酸/氨基酸同一性,连同16S-23S ITS及其二级结构分析等传统方法,证实了A183菌株与其他 菌株的遗传差异。比较基因组和系统发育基因组分析揭示了A183菌株和O-77菌株之间不一致的基因组结构。进一步的基因本体分析表明,这两个菌株的独特基因分布在广泛的功能类别中。此外,对与耐热性、信号转导以及碳/氮/硫同化相关基因的分析揭示了该菌株适应温泉恶劣生态位的能力,并且这些发现通过基于培养的实验方法得到了初步证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/964e/8461337/9a8736b44e06/fmicb-12-696102-g001.jpg

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