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Comparison of Four Comamonas Catabolic Plasmids Reveals the Evolution of pBHB To Catabolize Haloaromatics

机译:四种Comamonas分解代谢质粒的比较揭示了pBHB分解卤代芳烃的进化

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Comamonas plasmids play important roles in shaping the phenotypes of their hosts and the adaptation of these hosts to changing environments, and understanding the evolutionary strategy of these plasmids is thus of great concern. In this study, the sequence of the 119-kb 3,5-dibromo-4-hydroxybenzonitrile-catabolizing plasmid pBHB from Comamonas sp. strain 7D-2 was studied and compared with those of three other Comamonas haloaromatic catabolic plasmids. Incompatibility group determination based on a phylogenetic analysis of 24 backbone gene proteins, as well as TrfA, revealed that these four plasmids all belong to the IncP-1β subgroup. Comparison of the four plasmids revealed a conserved backbone region and diverse genetic-load regions. The four plasmids share a core genome consisting of 40 genes (>50% similarities) and contain 12 to 50 unique genes each, most of which are xenobiotic-catabolic genes. Two functional reductive dehalogenase gene clusters are specifically located on pBHB, showing distinctive evolution of pBHB for haloaromatics. The higher catabolic ability of the bhbA2B2 cluster than the bhbAB cluster may be due to the transcription levels and the character of the dehalogenase gene itself rather than that of its extracytoplasmic binding receptor gene. The plasmid pBHB is riddled with transposons and insertion sequence (IS) elements, and ISs play important roles in the evolution of pBHB. The analysis of the origin of the bhb genes on pBHB suggested that these accessory genes evolved independently. Our work provides insights into the evolutionary strategies of Comamonas plasmids, especially into the adaptation mechanism employed by pBHB for haloaromatics.
机译:Comamonas质粒在塑造其宿主的表型以及使这些宿主适应不断变化的环境方面发挥着重要作用,因此,对这些质粒的进化策略非常关注。在这项研究中,来自Comamonas sp。的119-kb 3,5-二溴-4-羟基苄腈分解代谢质粒pBHB的序列。研究了菌株7D-2,并将其与其他三个Comamonas卤代芳香族分解代谢质粒的菌株进行了比较。基于对24种主链基因蛋白以及TrfA的系统发育分析,确定不相容基团表明,这四个质粒均属于IncP-1β亚组。四种质粒的比较揭示了一个保守的骨架区域和不同的遗传负载区域。这四个质粒共有一个核心基因组,该基因组由40个基因(> 50%相似性)组成,每个基因组包含12至50个独特的基因,其中大多数是异种分解代谢基因。两个功能性还原脱卤素酶基因簇专门位于pBHB上,显示了卤代芳香族化合物pBHB的独特进化。 bhbA2B2簇比bhbAB簇具有更高的分解代谢能力,可能是由于脱卤素酶基因本身的转录水平和特征,而不是其胞质外结合受体基因的特征。质粒pBHB充满了转座子和插入序列(IS)元素,而IS在pBHB的进化中起着重要作用。对pBHB上bhb基因起源的分析表明,这些辅助基因是独立进化的。我们的工作为Comamonas质粒的进化策略提供了见识,尤其是pBHB对卤代芳香族化合物的适应机制。

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