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从深海热液流体中分离并鉴定出一种隶属于迄今未培养的候选门WOR-3的细菌。

Isolation and characterization of a bacterium affiliated with the hitherto uncultured candidate phylum WOR-3 from a deep-sea hydrothermal fluid.

作者信息

Mori Koji, Hidaka Kohei, Tamazawa Satoshi, Hosoyama Akira, Tamaki Hideyuki, Kakegawa Takeshi, Hanada Satoshi

机构信息

NITE Biological Resource Center (NBRC), National Institute of Technology and Evaluation (NITE), Kisarazu, Chiba, Japan.

Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, Japan.

出版信息

Appl Environ Microbiol. 2025 Jul 23;91(7):e0018825. doi: 10.1128/aem.00188-25. Epub 2025 Jun 10.

Abstract

UNLABELLED

A pure cultured representative, designated strain sy37, in the candidate WOR-3 lineage was obtained from a deep-sea hydrothermal fluid. This lineage was named as the candidate phylum, " Caldipriscota," " Hydrothermota," or " Stahliibacteriota," based on metagenome-assembled genomes of samples from various environments. The isolated strain was a thermophilic, microaerophilic, and chemoheterotrophic rod and obtained energy through aerobic/anaerobic respiration using oxygen and elemental sulfur. The strain could not use thiosulfate, sulfate, sulfite, fumarate, nitrate, nitrite, selenate, selenite, arsenate, ferric citrate, or ferrihydrite as an electron acceptor. Genomic annotation suggested that strain sy37 possesses a novel sulfur reduction mechanism. Among members of the WOR-3 lineage, only the group containing strain sy37 possessed the oxidative phosphorylation pathway with V-type ATPase and cytochrome oxidase and may be capable of evolving to adapt to modern oxidative environments.

IMPORTANCE

Genome analysis from various environments has revealed the overall diversity of microorganisms. However, there are many lineages for which culture representatives do not yet exist, and the characteristics and ecological significance of many of these microorganisms remain unclear: the WOR-3 lineage is one of these and has been found in various environments through the 16S rRNA gene analysis. In recent years, the metagenome-assembled genomes have been determined from the environments. In this study, we report on the successful isolation of a thermophilic microaerobic chemoorganoheterotroph, strain sy37, which is phylogenetically belonging to the WOR-3 lineage, from a deep-sea hydrothermal environment for the first time.

摘要

未标记

从深海热液中获得了候选WOR-3谱系中的一个纯培养代表菌株,命名为sy37。基于来自各种环境样本的宏基因组组装基因组,该谱系被命名为候选门“Caldipriscota”、“Hydrothermota”或“Stahliibacteriota”。分离出的菌株是嗜热、微需氧和化能异养的杆状菌,通过利用氧气和元素硫进行有氧/无氧呼吸来获取能量。该菌株不能使用硫代硫酸盐、硫酸盐、亚硫酸盐、富马酸盐、硝酸盐、亚硝酸盐、硒酸盐、亚硒酸盐、砷酸盐、柠檬酸铁或水铁矿作为电子受体。基因组注释表明,菌株sy37具有一种新的硫还原机制。在WOR-3谱系的成员中,只有包含菌株sy37的组具有带有V型ATP酶和细胞色素氧化酶的氧化磷酸化途径,并且可能能够进化以适应现代氧化环境。

重要性

来自各种环境的基因组分析揭示了微生物的总体多样性。然而,有许多谱系尚未有培养代表,并且这些微生物中的许多的特征和生态意义仍不清楚:WOR-3谱系就是其中之一,通过16S rRNA基因分析在各种环境中都有发现。近年来,已从环境中确定了宏基因组组装基因组。在本研究中,我们首次报告了从深海热液环境中成功分离出一种嗜热微需氧化能有机异养菌,菌株sy37,其在系统发育上属于WOR-3谱系。

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