首页|Identification and characterization of an ectoine biosynthesis gene cluster from Aestuariispira ectoiniformans sp. nov., isolated from seawater

Identification and characterization of an ectoine biosynthesis gene cluster from Aestuariispira ectoiniformans sp. nov., isolated from seawater

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An ectoine-producing bacterium, designated SWCN16T, was isolated from seawater and could be grown in a medium containing up to 12 % NaCl. A phylogenetic analysis based on 16S rRNA gene sequences revealed that strain SWCN16T belonged to the genus Aestuariispira, class Alphaproteobacteria, and shared the highest 16S rRNA gene sequence similarity of 96.8% with Aestuariispira insulae CECT 8488T. The phenotypic, chemotaxonomic, and genotypic characteristics findings of this study suggested that strain SWCN16T represented a novel species of the genus Aestuariispira. We propose the name Aestuariispira ectoiniformans sp. nov. for this species. Whole-genome sequencing analysis of the isolate revealed a putative ectABC gene cluster for ectoine biosynthesis. These genes were found to be functional using ectoine synthesis testing and S16-ectBAC cells, which were pET21aectBAC-transformed E. coli BL21 cells. We found that S16-ectBAC synthesized about 1.67 g/L extracellular ectoine and about 0.59 g/L intracellular ectoine via bioconversion at optimum conditions.

AestuariispiraMarine bacteriumCompatible soluteEctoine synthesis geneEctoine synthesisCOMPATIBLE SOLUTE ACCUMULATIONTRAP-TRANSPORTER TEAABCHALOMONAS-ELONGATAHYDROXYECTOINEBACTERIASEQUENCES

Kang, Ji Young、Kim, Jeong Ah、Kim, Min-Soo、Kim, Chul Ho、Lee, Binna

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Korea Res Inst Biosci & Biotechnol KRIBB

2022

Microbiological Research

Microbiological Research

EISCI
ISSN:0944-5013
年,卷(期):2022.254
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