一种能自养甲基化的Delftia植物共生体。

Mikrobiologiia Pub Date : 2017-01-01
N V Agafonova, N V Doronina, E N Kaparullina, D N Fedorov, A B Gafarov, O I Sazonova, S L Sokolov, Yu A Trotsenko
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引用次数: 0

摘要

从羽扇豆(Lupinus polyphyllus L.)根瘤中分离到一株兼性甲基营养细菌Lp-1,其16S rRNA基因序列与Delftia菌株具有很高的相似性(94-99.9%)。Delftia sp. Lp-1细胞为可运动的革兰氏阴性杆状细胞。主要脂肪酸为C16:0(34.2%)、C16:1ω9(14.5%)和C18:1ω7c(17.3%)。磷脂酰乙醇胺、磷脂酰胆碱和磷脂酰甘油是主要的磷脂。Q8是主要的泛醌。24 ~ 26℃、pH 7.1 ~ 7.3条件下生长最佳;1% NaCl抑制生长。该生物利用经典的甲醇脱氢酶氧化甲醇,并利用C1代谢的二磷酸核酮糖途径。对MxaF甲醇脱氢酶大亚基的翻译氨基酸序列分析显示,MxaF与Angulomicrobium、Starkeya和Ancylobacter等甲变形菌类自营养甲基化菌的序列相似性为85.5-94%,表明MxaF基因可能是通过水平基因转移获得的。Delftia sp. Lp-1 (VKM B-3039, DSM 24446)是Delftia属的第一个甲基营养成员,是一种植物共生体,促进植物生长和形态发生,提高光合色素水平和比叶重。它具有固氮基因nifH,能增磷,合成生长素和铁载体,对植物病原真菌和杆菌有拮抗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel Delftia plant symbiont capable of autotrophic methylotrophy.

A facultative methylotrophic bacterium, strain Lp-1, which was isolated from root nodules of lupine (Lupinus polyphyllus L.) on the medium with methanol as a carbon and energy source, exhibited high similarity of the 16S rRNA gene sequences to Delftia strains (94‒99.9%). The cells of Delftia sp. Lp-1 were motile gram-negative rods dividing by binary fission. Predominant fatty acids were C16:0 (34.2%), C16:1ω9 (14.5%), and C18:1ω7c (17.3%). Phosphatidylethanolamine, phosphatidylcholine, and phosphatidylglycerol were the dominant phospholipids. Q8 was the major ubiquinone. Optimal growth occurred at 24‒26°C and pH 7.1‒7.3; growth was inhibited by 1% NaCl. The organism oxidized methanol with the classical methanol dehydrogenase and used the ribulose bisphosphate pathway of C1 metabolism. Analysis of translated amino acid sequence of the large subunit of the MxaF methanol dehydrogenase revealed 85.5‒94% similarity to the sequences of such autotrophic methylotrophs of the class Alphaproteobacteria as Angulomicrobium, Starkeya, and Ancylobacter, indicating the possible acquisition of the mxaF gene via horizontal gene transfer. Delftia sp. Lp-1 (VKM B-3039, DSM 24446), the first methylotrophic member of the genus Delftia, was shown to be a plant symbiont, stimulating plant growth and morphogenesis, increasing the level of photosynthetic pigments and specific leaf weight. It possesses the nifH gene of nitrogen fixation, is capable of phosphate solubilization, synthesis of auxins and siderophores, and is antagonistic to plant pathogenic fungi and bacilli.

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