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阿尔文硝化球菌属,新属,一种从东太平洋海隆深海热液喷口分离到的氢氧化化能自养菌,根据“弯曲杆菌门”的基于基因组的分类学推断。

Nitrosophilus alvini gen. nov., sp. nov., a hydrogen-oxidizing chemolithoautotroph isolated from a deep-sea hydrothermal vent in the East Pacific Rise, inferred by a genome-based taxonomy of the phylum "Campylobacterota".

机构信息

Laboratory of Microbiology, Faculty of Fisheries Sciences, Hokkaido University, Hakodate, Japan.

Department of Biology, Woods Hole Oceanographic Institution, Woods Hole, MA, United States of America.

出版信息

PLoS One. 2020 Dec 10;15(12):e0241366. doi: 10.1371/journal.pone.0241366. eCollection 2020.

Abstract

A novel bacterium, strain EPR55-1T, was isolated from a deep-sea hydrothermal vent on the East Pacific Rise. The cells were motile rods. Growth was observed at temperatures between 50 and 60°C (optimum, 60°C), at pH values between 5.4 and 8.6 (optimum, pH 6.6) and in the presence of 2.4-3.2% (w/v) NaCl (optimum, 2.4%). The isolate used molecular hydrogen as its sole electron donor, carbon dioxide as its sole carbon source, ammonium as its sole nitrogen source, and thiosulfate, sulfite (0.01 to 0.001%, w/v) or elemental sulfur as its sole sulfur source. Nitrate, nitrous oxide (33%, v/v), thiosulfate, molecular oxygen (0.1%, v/v) or elemental sulfur could serve as the sole electron acceptor to support growth. Phylogenetic analyses based on both 16S rRNA gene sequences and whole genome sequences indicated that strain EPR55-1T belonged to the family Nitratiruptoraceae of the class "Campylobacteria", but it had the distinct phylogenetic relationship with the genus Nitratiruptor. On the basis of the physiological and molecular characteristics of the isolate, the name Nitrosophilus alvini gen. nov. sp. nov. is proposed, with EPR55-1T as the type strain (= JCM 32893T = KCTC 15925T). In addition, it is shown that "Nitratiruptor labii" should be transferred to the genus Nitrtosophilus; the name Nitrosophilus labii comb. nov. (JCM 34002T = DSM 111345T) is proposed for this organism. Furthermore, 16S rRNA gene-based and genome-based analyses showed that Cetia pacifica is phylogenetically associated with Caminibacter species. We therefore propose the reclassification of Cetia pacifica as Caminibacter pacificus comb. nov. (DSM 27783T = JCM 19563T). Additionally, AAI thresholds for genus classification and the reclassification of subordinate taxa within "Campylobacteria" are also evaluated, based on the analyses using publicly available genomes of all the campylobacterial species.

摘要

一种新的细菌菌株,EPR55-1T 株,从东太平洋海隆的深海热液喷口分离得到。细胞为运动的杆状。在 50-60°C(最佳,60°C)之间、pH 值在 5.4-8.6 之间(最佳,pH6.6)和 2.4-3.2%(w/v)NaCl(最佳,2.4%)的条件下观察到生长。该分离物仅使用分子氢作为其唯一的电子供体,二氧化碳作为其唯一的碳源,铵作为其唯一的氮源,硫代硫酸盐、亚硫酸盐(0.01-0.001%,w/v)或元素硫作为其唯一的硫源。硝酸盐、一氧化二氮(33%,v/v)、硫代硫酸盐、分子氧(0.1%,v/v)或元素硫可以作为唯一的电子受体来支持生长。基于 16S rRNA 基因序列和全基因组序列的系统发育分析表明,菌株 EPR55-1T 属于“弯曲杆菌”类的 Nitratiruptoraceae 科,但与 Nitratiruptor 属具有明显的系统发育关系。基于分离株的生理和分子特征,提出了一个新属 Nitrosophilus alvini gen. nov. sp. nov.,以 EPR55-1T 为模式菌株(=JCM 32893T=KCTC 15925T)。此外,“Nitratiruptor labii”应转移到 Nitrtosophilus 属;该生物被命名为 Nitrosophilus labii comb. nov.(JCM 34002T=DSM 111345T)。此外,基于 16S rRNA 基因和基因组的分析表明,Cetia pacifica 与 Caminibacter 种在系统发育上相关。因此,我们建议将 Cetia pacifica 重新分类为 Caminibacter pacificus comb. nov.(DSM 27783T=JCM 19563T)。此外,还基于对所有弯曲杆菌种的公开基因组进行的分析,评估了属分类的 AAI 阈值和“弯曲杆菌”下属分类群的重新分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccac/7728183/4220ef63aa8c/pone.0241366.g001.jpg

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