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Comparative genomic analysis reveals the evolution and environmental adaptation strategies of vibrios

机译:比较基因组分析揭示了弧菌的进化和环境适应策略

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Vibrios are among the most diverse and ecologically important marine bacteria, which have evolved many characteristics and lifestyles to occupy various niches. The relationship between genome features and environmental adaptation strategies is an essential part for understanding the ecological functions of vibrios in the marine system. The advent of complete genome sequencing technology has provided an important method of examining the genetic characteristics of vibrios on the genomic level. Two Vibrio genomes were sequenced and found to occupy many unique orthologues families which absent from the previously genes pool of the complete genomes of vibrios. Comparative genomics analysis found vibrios encompass a steady core-genome and tremendous pan-genome with substantial gene gain and horizontal gene transfer events in the evolutionary history. Evolutionary analysis based on the core-genome tree suggested that V. fischeri emerged ~?385 million years ago, along with the occurrence of cephalopods and the flourish of fish. The relatively large genomes, the high number of 16S rRNA gene copies, and the presence of R-M systems and CRISPR system help vibrios live in various marine environments. Chitin-degrading related genes are carried in nearly all the Vibrio genomes. The number of chitinase genes in vibrios has been extremely expanded compared to which in the most recent ancestor of the genus. The chitinase A genes were estimated to have evolved along with the genus, and have undergone significant purifying selective force to conserve the ancestral state. Vibrios have experienced extremely genome expansion events during their evolutionary history, allowing them to develop various functions to spread globally. Despite their close phylogenetic relationships, vibrios were found to have a tremendous pan-genome with a steady core-genome, which indicates the highly plastic genome of the genus. Additionally, the existence of various chitin-degrading related genes and the expansion of chitinase A in the genus demonstrate the importance of the chitin utilization for vibrios. Defensive systems in the Vibrio genomes may protect them from the invasion of external DNA. These genomic features investigated here provide a better knowledge of how the evolutionary process has forged Vibrio genomes to occupy various niches.
机译:弧菌是最多样化和对生态具有重要意义的海洋细菌之一,已进化出许多特征和生活方式来占据各种生态位。基因组特征与环境适应策略之间的关系是理解海洋系统中弧菌生态功能的重要组成部分。完整的基因组测序技术的出现提供了一种在基因组水平上检查弧菌遗传特性的重要方法。对两个弧菌基因组进行了测序,发现它们占据了许多独特的直向同源物家族,而弧菌完整基因组的先前基因库中却没有这些家族。比较基因组学分析发现,弧菌包含稳定的核心基因组和巨大的泛基因组,在进化史中具有大量的基因增益和水平的基因转移事件。基于核心基因组树的进化分析表明,费氏弧菌出现在大约3.85亿年前,伴随着头足类动物的出现和鱼类的繁盛。相对较大的基因组,大量的16S rRNA基因拷贝以及R-M系统和CRISPR系统的存在有助于弧菌生活在各种海洋环境中。几丁质弧菌基因组几乎都带有几丁质降解相关基因。与该属的最新祖先相比,弧菌中几丁质酶基因的数量已大大增加。几丁质酶A基因据估计已与该属一起进化,并经历了显着的纯化选择力以保持祖先状态。弧菌在其进化史中经历了极为严重的基因组扩增事件,使它们能够发展各种功能,从而向全球传播。尽管弧菌具有密切的系统发育关系,但它们仍被发现具有巨大的泛基因组和稳定的核心基因组,这表明该属的高可塑性基因组。此外,各种几丁质降解相关基因的存在和几丁质酶A的扩展证明了利用几丁质对弧菌的重要性。弧菌基因组中的防御系统可以保护它们免受外部DNA的入侵。在此研究的这些基因组特征为进化过程如何伪造弧菌基因组以占据各种生态位提供了更好的知识。

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