State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic and Developmental Sciences and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, P. R. China.
Biotechnol J. 2020 May;15(5):e1900499. doi: 10.1002/biot.201900499. Epub 2020 Mar 1.
Vibrio is a recognized fast-growing bacterial genus, which is considered to be attractive for the development of next-generation biotechnological workhorses. Here, three Vibrio strains FA1, FA2, and FA3, capable of growing rapidly in cost-effective media, are isolated and systematically evaluated. Genome sequencing and comparative genomic analyses are performed to reveal the underlying genetic differences between the strains and estimate their biotechnological potential. Studies of their phylogenetic tree, colinear visualization, and orthology uncover some difference in the gene content related to cell growth of the four Vibrio strains FA1, FA2, FA3, and ATCC 14048, which may explain growth superiority of the isolated strains. It is noted that there are more copies of several genes related to the DNA replication in the FA2 genome than in the other compared Vibrio strains. Furthermore, the genes responsible for amino synthesis are found, such as asD, within strains FA1 and FA2. Gene cluster cadABC, which relates to cell adaptation at acidic pH, only exists in strains FA1, FA2, and FA3. Finally, the wide spectra of substrates and genetic operability of these three isolated Vibrio strains are initially verified. This study provides excellent candidates for the development of next-generation fast-growing microbial workhorses, which may be very useful in synthetic biology.
弧菌是一种公认的快速生长的细菌属,被认为是开发下一代生物技术工作载体的有吸引力的选择。在这里,分离并系统评估了三种能够在具有成本效益的培养基中快速生长的弧菌菌株 FA1、FA2 和 FA3。进行基因组测序和比较基因组分析,以揭示菌株之间潜在的遗传差异,并估计它们的生物技术潜力。对它们的系统发育树、共线性可视化和同源性的研究揭示了 FA1、FA2、FA3 和 ATCC 14048 这四种弧菌菌株在与细胞生长相关的基因含量上存在一些差异,这可能解释了分离菌株的生长优势。值得注意的是,FA2 基因组中与 DNA 复制相关的几个基因的拷贝数比其他比较的弧菌菌株多。此外,还发现了负责氨基酸合成的基因,如 FA1 和 FA2 中的 asD。与酸性 pH 下细胞适应相关的基因簇 cadABC 仅存在于 FA1、FA2 和 FA3 菌株中。最后,初步验证了这三种分离的弧菌菌株广泛的底物谱和遗传可操作性。这项研究为开发下一代快速生长的微生物工作载体提供了极好的候选者,这在合成生物学中可能非常有用。