Suppr超能文献

描述并分析了从贝加尔湖低温沉积物中分离出的第一株兼性自养嗜热菌属(Thermaerobacter)的细菌,该菌为嗜热菌。

Description and Genomic Analysis of the First Facultatively Lithoautotrophic, Thermophilic Bacteria of the Genus Thermaerobacter Isolated from Low-temperature Sediments of Lake Baikal.

机构信息

Laboratory of Hydrocarbon Microbiology, Limnological Institute, Siberian Branch, Russian Academy of Sciences, Irkutsk, Russia.

SB RAS Genomics Core Facility, Institute of Chemical Biology and Fundamental Medicine, Siberian Branch, Russian Academy of Sciences, Novosibirsk, Russia.

出版信息

Microb Ecol. 2023 Oct;86(3):1604-1619. doi: 10.1007/s00248-023-02182-1. Epub 2023 Jan 31.

Abstract

Members of the genus Thermaerobacter belong to the phylum Firmicutes and all isolates characterised to date are strictly aerobic and thermophilic. They were isolated from a mud sample of the Challenger Deep in the Mariana Trench, hydrothermal vents, and silt compost. A novel thermophilic, facultatively lithoautotrophic bacteria of the genus Thermaerobacter, strain PB12/4term (=VKM B-3151), with a metabolism that is uncharacteristic of the type species, was isolated from low-temperature surface sediments near the Posolsk Bank methane seep, Lake Baikal, Russia. The new strain grows with molecular hydrogen as electron donor, elemental sulfur, and thiosulfate as electron acceptors, and CO/[Formula: see text] as carbon source. The genome of strain PB12/4term consists of one chromosome with a total length of 2.820.915 bp and the G+C content of the genomic DNA was 72.2%. The phylogenomic reconstruction based on 120 conserved bacterial single-copy proteins revealed that strain PB12/4term belongs to the genus Thermaerobacter within in the class Thermaerobacteria, phylum Firmicutes_E. The strain PB12/4term is closely related to Thermaerobacter subterraneus DSM 13965 (ANI=95.08%, AF=0.91) and Thermaerobacter marianensis DSM 12885 (ANI=84.98%, AF=0.77). Genomic and experimental data confirm the ability of the Thermaerobacter PB12/4term pure culture to facultatively lithotrophic growth, which is provided by the presence of [NiFe]hydrogenase enzymes that are absent in T. marianensis DSM 12885 and T. subterraneus DSM 13965. The data obtained on the physiological and biochemical differences of strain PB12/4term provide a deeper insight into the species diversity and functional activity of the genus Thermaerobacter.

摘要

属 Thermaerobacter 的成员属于厚壁菌门,所有迄今为止特征描述的分离株都是严格需氧和嗜热的。它们从马里亚纳海沟挑战者深渊的泥浆样本、热液喷口和淤泥堆肥中分离出来。从俄罗斯贝加尔湖波索尔斯克银行甲烷渗漏附近的低温表层沉积物中,分离到一种新型的嗜热、兼性自养的 Thermaerobacter 属细菌,菌株 PB12/4term(=VKM B-3151),其代谢方式与模式种不同。新菌株以分子氢为电子供体、元素硫和硫代硫酸盐为电子受体、CO/[Formula: see text]为碳源生长。菌株 PB12/4term 的基因组由一条染色体组成,总长度为 2.820.915 bp,基因组 DNA 的 G+C 含量为 72.2%。基于 120 个保守细菌单拷贝蛋白的系统发育重建表明,菌株 PB12/4term 属于厚壁菌门_E 类 Thermaerobacteria 属。该菌株与地下 Thermaerobacter subterraneus DSM 13965(ANI=95.08%,AF=0.91)和马里亚纳 Thermaerobacter marianensis DSM 12885(ANI=84.98%,AF=0.77)密切相关。基因组和实验数据证实了 Thermaerobacter PB12/4term 纯培养物具有兼性自养生长的能力,这是由[NiFe]氢化酶的存在提供的,而这些酶在 T. marianensis DSM 12885 和 T. subterraneus DSM 13965 中不存在。对菌株 PB12/4term 的生理生化差异的研究结果,更深入地了解了 Thermaerobacter 属的物种多样性和功能活性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验