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从名仓温泉在固氮条件下分离出的水生栖热菌门嗜热化能自养细菌中的固氮酶活性

Nitrogenase Activity in Thermophilic Chemolithoautotrophic Bacteria in the Phylum Aquificae Isolated under Nitrogen-Fixing Conditions from Nakabusa Hot Springs.

作者信息

Nishihara Arisa, Matsuura Katsumi, Tank Marcus, McGlynn Shawn E, Thiel Vera, Haruta Shin

机构信息

Department of Biological Sciences, Tokyo Metropolitan University.

Earth-Life Science Institute, Tokyo Institute of Technology.

出版信息

Microbes Environ. 2018 Dec 28;33(4):394-401. doi: 10.1264/jsme2.ME18041. Epub 2018 Nov 23.

Abstract

The phylum Aquificae comprises chemolithoautotrophic thermophilic to hyperthermophilic bacteria, in which the nitrogenase reductase gene (nifH) has been reported. However, nitrogen-fixing activity has not yet been demonstrated in members of this deeply branching bacterial phylum. We isolated two thermophilic diazotrophic strains from chemosynthetic microbial communities in slightly alkaline hot springs (≥70°C) in Nakabusa, Nagano Prefecture, Japan. A phylogenetic analysis based on 16S rRNA genes identified these strains as members of the genus Hydrogenobacter within Aquificae. Their NifH sequences showed 96.5 and 97.4% amino acid sequence identities to that from Hydrogenobacter thermophilus TK-6. Nitrogenase activity, measured by acetylene reduction, was confirmed in both strains at 70°C. These novel strains grew under semi-aerobic conditions by using CO as the sole carbon source and N as the sole nitrogen source in media containing hydrogen and/or thiosulfate. To the best of our knowledge, this is the first demonstration of active nitrogen fixation in thermophilic bacteria at 70°C and in the phylum Aquificae.

摘要

产水菌门包含化能无机自养型嗜热至超嗜热细菌,其中已报道了固氮酶还原酶基因(nifH)。然而,在这个进化分支较深的细菌门的成员中,尚未证实有固氮活性。我们从日本长野县中房的微碱性温泉(≥70°C)的化学合成微生物群落中分离出两株嗜热固氮菌株。基于16S rRNA基因的系统发育分析将这些菌株鉴定为产水菌门中氢杆菌属的成员。它们的NifH序列与嗜热氢杆菌TK-6的NifH序列的氨基酸序列同一性分别为96.5%和97.4%。通过乙炔还原法测定,在70°C时两株菌株均证实有固氮酶活性。这些新菌株在半好氧条件下生长,在含有氢气和/或硫代硫酸盐的培养基中以CO作为唯一碳源,以N作为唯一氮源。据我们所知,这是首次在70°C的嗜热细菌和产水菌门中证明有活性固氮作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbad/6307999/91d764f0d98a/33_394_3.jpg

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