Diversity and phylogeny of the ectoine biosynthesis genes in aerobic, moderately halophilic methylotrophic bacteria

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作者
Alexander S. Reshetnikov
Valentina N. Khmelenina
Ildar I. Mustakhimov
Marina Kalyuzhnaya
Mary Lidstrom
Yuri A. Trotsenko
机构
[1] Russian Academy of Sciences,Institute of Biochemistry and Physiology of Microorganisms
[2] University of Washington,Department of Chemical Engineering
[3] University of Washington,Department of Microbiology
来源
Extremophiles | 2011年 / 15卷
关键词
Methylotrophic bacteria; Methanotrophs; Compatible solutes; Ectoine biosynthesis genes;
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摘要
The genes of ectoine biosynthesis pathway were identified in six species of aerobic, slightly halophilic bacteria utilizing methane, methanol or methylamine. Two types of ectoine gene cluster organization were revealed in the methylotrophs. The gene cluster ectABC coding for diaminobutyric acid (DABA) acetyltransferase (EctA), DABA aminotransferase (EctB) and ectoine synthase (EctC) was found in methanotrophs Methylobacter marinus 7C and Methylomicrobium kenyense AMO1T. In methanotroph Methylomicrobium alcaliphilum ML1, methanol-utilizers Methylophaga thalassica 33146T, Methylophaga alcalica M8 and methylamine-utilizer Methylarculamarina h1T, the genes forming the ectABC–ask operon are preceded by ectR, encoding a putative transcriptional regulatory protein EctR. Phylogenetic relationships of the Ect proteins do not correlate with phylogenetic affiliation of the strains, thus implying that the ability of methylotrophs to produce ectoine is most likely the result of a horizontal transfer event.
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