Department of Biological Sciences, University of Delaware, Newark, DE 19716.
Microbiol Spectr. 2015 Oct;3(5). doi: 10.1128/microbiolspec.VE-0009-2014.
Similar to other genera and species of bacteria, whole genomic sequencing has revolutionized how we think about and address questions of basic Vibrio biology. In this review we examined 36 completely sequenced and annotated members of the Vibrionaceae family, encompassing 12 different species of the genera Vibrio, Aliivibrio, and Photobacterium. We reconstructed the phylogenetic relationships among representatives of this group of bacteria by using three housekeeping genes and 16S rRNA sequences. With an evolutionary framework in place, we describe the occurrence and distribution of primary and alternative sigma factors, global regulators present in all bacteria. Among Vibrio we show that the number and function of many of these sigma factors differs from species to species. We also describe the role of the Vibrio-specific regulator ToxRS in fitness and survival. Examination of the biochemical capabilities was and still is the foundation of classifying and identifying new Vibrio species. Using comparative genomics, we examine the distribution of carbon utilization patterns among Vibrio species as a possible marker for understanding bacteria-host interactions. Finally, we discuss the significant role that horizontal gene transfer, specifically, the distribution and structure of integrons, has played in Vibrio evolution.
类似于其他细菌属和种,全基因组测序彻底改变了我们思考和解决基础弧菌生物学问题的方式。在这篇综述中,我们研究了 36 个完全测序和注释的弧菌科成员,涵盖了弧菌属、Aliivibrio 属和 Photobacterium 属的 12 个不同种。我们使用三个管家基因和 16S rRNA 序列重建了该组细菌代表之间的系统发育关系。有了进化框架,我们描述了主要和替代 sigma 因子的发生和分布,sigma 因子是所有细菌中都存在的全局调节剂。在弧菌中,我们表明许多这些 sigma 因子的数量和功能因物种而异。我们还描述了 Vibrio 特异性调节剂 ToxRS 在适应度和存活中的作用。生物化学能力的研究一直是分类和鉴定新弧菌种的基础。通过比较基因组学,我们研究了碳利用模式在弧菌种间的分布,作为理解细菌-宿主相互作用的可能标记。最后,我们讨论了水平基因转移(特别是整合子的分布和结构)在弧菌进化中所起的重要作用。