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从中国腾冲和西藏温泉中分离出的 Thermus 菌株的系统基因组分析和比较基因组研究。

Phylogenomic analyses and comparative genomic studies of Thermus strains isolated from Tengchong and Tibet Hot Springs, China.

机构信息

Faculty of Veterinary and Animal Sciences, Institute of Microbiology, Gomal University, Dera Ismail Khan, Khyber Pakhtunkhwa, 29050, Pakistan.

School of Life Sciences, Yunnan Institute of Microbiology, Yunnan University, Kunming, 650091, People's Republic of China.

出版信息

Antonie Van Leeuwenhoek. 2024 Jul 23;117(1):103. doi: 10.1007/s10482-024-02001-8.

Abstract

Genus Thermus is the main focus of researcher among the thermophiles. Members of this genus are the inhabitants of both natural and artificial thermal environments. We performed phylogenomic analyses and comparative genomic studies to unravel the genomic diversity among the strains belonging to the genus Thermus in geographically different thermal springs. Sixteen Thermus strains were isolated and sequenced from hot springs, Qucai hot springs in Tibet and Tengchong hot springs in Yunnan, China. 16S rRNA gene based phylogeny and phylogenomic analyses based on concatenated set of 971 Orthologous Protein Families (supermatrix and gene content methods) revealed a mixed distribution of the Thermus strains. Whole genome based phylogenetic analysis showed, all 16 Thermus strains belong to five species; Thermus oshimai (YIM QC-2-109, YIM 1640, YIM 1627, 77359, 77923, 77838), Thermus antranikianii (YIM 73052, 77412, 77311, 71206), Thermus brokianus (YIM 73518, 71318, 72351), Thermus hydrothermalis (YIM 730264 and 77927) and one potential novel species 77420 forming clade with Thermus thalpophilus SYSU G00506. Although the genomes of different strains of Thermus of same species were highly similar in their metabolic pathways, but subtle differences were found. CRISPR loci were detected through genome-wide screening, which showed that Thermus isolates from two different thermal locations had well developed defense system against viruses and adopt similar strategy for survival. Additionally, comparative genome analysis screened competence loci across all the Thermus genomes which could be helpful to acquire DNA from environment. In the present study it was found that Thermus isolates use two mechanism of incomplete denitrification pathway, some Thermus strains produces nitric oxide while others nitrious oxide (dinitrogen oxide), which show the heterotrophic lifestyle of Thermus genus. All isolated organisms encoded complete pathways for glycolysis, tricarboxylic acid and pentose phosphate. Calvin Benson Bassham cycle genes were identified in genomes of T. oshimai and T. antranikianii strains, while genomes of all T. brokianus strains and organism 77420 were lacking. Arsenic, cadmium and cobalt-zinc-cadmium resistant genes were detected in genomes of all sequenced Thermus strains. Strains 77,420, 77,311, 73,518, 77,412 and 72,351 genomes were found harboring genes for siderophores production. Sox gene clusters were identified in all sequenced genomes, except strain YIM 730264, suggesting a mode of chemolithotrophy. Through the comparative genomic analysis, we also identified 77420 as the genome type species and its validity as novel organism was confirmed by whole genome sequences comparison. Although isolate 77420 had 99.0% 16S rRNA gene sequence similarity with T. thalpophilus SYSU G00506 but based on ANI 95.86% (Jspecies) and digital DDH 68.80% (GGDC) values differentiate it as a potential novel species. Similarly, in the phylogenomic tree, the novel isolate 77,420 forming a separate branch with their closest reference type strain T. thalpophilus SYSU G00506.

摘要

属 Thermus 是嗜热微生物研究人员的主要研究对象。该属的成员是自然和人工热环境的居住者。我们进行了系统发育基因组分析和比较基因组研究,以揭示地理上不同温泉中属于 Thermus 属的菌株的基因组多样性。从西藏曲才温泉和云南腾冲温泉中分离并测序了 16 株 Thermus 菌株。16S rRNA 基因系统发育分析和基于 971 个直系同源蛋白家族(超级矩阵和基因含量方法)的系统发育基因组分析显示,Thermus 菌株呈混合分布。全基因组系统发育分析表明,所有 16 株 Thermus 菌株均属于 5 个种:Thermus oshimai(YIM QC-2-109、YIM 1640、YIM 1627、77359、77923、77838)、Thermus antranikianii(YIM 73052、77412、77311、71206)、Thermus brokianus(YIM 73518、71318、72351)、Thermus hydrothermalis(YIM 730264 和 77927)和一个潜在的新种 77420,与 Thermus thalpophilus SYSU G00506 形成一个分支。尽管同一种 Thermus 菌株的基因组在代谢途径上高度相似,但也存在细微差异。通过全基因组筛选检测到 CRISPR 基因座,表明来自两个不同热区的 Thermus 分离株具有良好的抗病毒防御系统,并采用相似的生存策略。此外,比较基因组分析筛选了所有 Thermus 基因组中的竞争基因座,这可能有助于从环境中获取 DNA。在本研究中发现,Thermus 分离株使用两种不完全硝化途径的机制,一些 Thermus 菌株产生一氧化氮,而另一些产生亚硝态氮(二氮氧化物),这表明 Thermus 属的异养生活方式。所有分离的生物都编码了完整的糖酵解、三羧酸和戊糖磷酸途径。在 T. oshimai 和 T. antranikianii 菌株的基因组中鉴定了卡尔文-本森-巴斯汉姆循环基因,而所有 T. brokianus 菌株和 77420 生物的基因组则缺乏这些基因。在所有测序的 Thermus 菌株的基因组中都检测到砷、镉和钴-锌-镉抗性基因。菌株 77、420、77、311、73、518、77、412 和 72、351 的基因组被发现携带产生铁载体的基因。所有测序的基因组中都鉴定了 Sox 基因簇,除了菌株 YIM 730264 之外,这表明了一种化学自养的模式。通过比较基因组分析,我们还将 77420 确定为基因组型种,并通过全基因组序列比较确认了其作为新生物的有效性。尽管分离株 77420 与 Thermus thalpophilus SYSU G00506 的 16S rRNA 基因序列相似性为 99.0%,但根据 ANI 95.86%(Jspecies)和数字 DDH 68.80%(GGDC)值将其区分开来,认为它是一种潜在的新种。同样,在系统发育树中,新分离株 77420 与它们最接近的参考菌株 Thermus thalpophilus SYSU G00506 形成一个单独的分支。

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