首页> 外文期刊>Frontiers in Microbiology >Comparative Genomic Analyses Reveal Core-Genome-Wide Genes Under Positive Selection and Major Regulatory Hubs in Outlier Strains of Pseudomonas aeruginosa
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Comparative Genomic Analyses Reveal Core-Genome-Wide Genes Under Positive Selection and Major Regulatory Hubs in Outlier Strains of Pseudomonas aeruginosa

机译:比较基因组分析揭示了铜绿假单胞菌异常株正选择和主要调控集线下的核心基因组全基因

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Genomic information for outlier strains of Pseudomonas aeruginosa is exiguous when compared with classical strains. We sequenced and constructed the complete genome of an environmental strain CR1 of P. aeruginosa and performed the comparative genomic analysis. It clustered with the outlier group, hence we scaled up the analyses to understand the differences in environmental and clinical outlier strains. We identified eight new regions of genomic plasticity and a plasmid pCR1 with a VirB/D4 complex followed by trimeric auto-transporter that can induce virulence phenotype in the genome of strain CR1. Virulence genotype analysis revealed that strain CR1 lacked hemolytic phospholipase C and D, three genes for LPS biosynthesis and had reduced antibiotic resistance genes when compared with clinical strains. Genes belonging to proteases, bacterial exporters and DNA stabilization were found to be under strong positive selection, thus facilitating pathogenicity and survival of the outliers. The outliers had the complete operon for the production of vibrioferrin, a siderophore present in plant growth promoting bacteria. The competence to acquire multidrug resistance and new virulence factors makes these strains a potential threat. However, we identified major regulatory hubs that can be used as drug targets against both the classical and outlier groups.
机译:与经典菌株相比,铜绿假单胞菌离群菌株的基因组信息很少。我们测序并构建了铜绿假单胞菌环境菌株CR1的完整基因组,并进行了比较基因组分析。它与离群值分组在一起,因此我们扩大了分析范围,以了解环境和临床离群菌株的差异。我们确定了八个新的基因组可塑性区域和一个带有VirB / D4复合物的质粒pCR1,然后是三聚体自转运蛋白,可以在CR1菌株的基因组中诱导毒力表型。毒力基因型分析表明,与临床菌株相比,CR1菌株缺乏溶血磷脂酶C和D(LPS生物合成的三个基因),并且抗生素抗性基因降低。发现属于蛋白酶,细菌输出物和DNA稳定化的基因处于强阳性选择之下,从而促进异常值的致病性和存活。异常值具有完整的操纵子,可产生弧菌铁蛋白,这是植物生长促进细菌中存在的铁载体。获得多药耐药性和新的毒力因子的能力使这些菌株成为潜在的威胁。但是,我们确定了主要的监管中心,可以用作针对经典群体和异常群体的药物靶标。

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