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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular evolution of LysR-type transcriptional regulation in Pseudomonas aeruginosa
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Molecular evolution of LysR-type transcriptional regulation in Pseudomonas aeruginosa

机译:铜绿假单胞菌LysR型转录调控的分子进化

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Signal perception and transduction through tightly coordinated circuits is integral to the survival and persistence of microbes in diverse ecological niches. The capacity to adapt to changes in the environment is central to their ability to thrive under adverse circumstances. Signal dependent transcriptional regulators are a key mechanism through which microbes assimilate environmental cues and mediate the appropriate adaptive response. By far the largest class of transcriptional regulator is the LysR-class, which is universally distributed among bacteria, archaea, and even eukaryotic organisms. The number of LysR-Type Transcriptional Regulators (LTTRs) varies among species with one of the largest repertoires encoded in the genome of the nosocomial pathogen Pseudomonas aeruginosa. To understand the evolutionary basis for this, we undertook to analyse the relationship between the LTTRs, both at the species and genus level. Phylogenetic analysis of the complete Pseudomonas LTTR dataset revealed significant cluster patterns based on full length and domain analysis. Interestingly, evidence of acquisition through horizontal gene transfer was rare, with divergent evolution apparently favoured. Furthermore, genes that appear to have been acquired, as well as those with a non-classical topological arrangement were clustered in distinct groups in the phylogenetic trees, indicating some ancestral association. The conservation within clusters identified in this study will provide a useful platform for future molecular analyses.
机译:通过紧密协调的电路进行信号感知和信号转导对于微生物在各种生态位中的生存和持久性至关重要。适应环境变化的能力对于他们在不利环境下的ive壮成长至关重要。依赖信号的转录调节因子是微生物吸收环境线索并介导适当的适应性反应的关键机制。到目前为止,最大的转录调节因子是LysR-class,它在细菌,古细菌甚至真核生物中普遍分布。 LysR型转录调节因子(LTTRs)的数量在物种间有所不同,其中最大的组成成分之一是在医院病原体铜绿假单胞菌的基因组中编码的。为了了解其进化基础,我们承诺在物种和属水平上分析LTTR之间的关系。完整的假单胞菌LTTR数据集的系统进化分析显示,基于全长和域分析,显着的簇模式。有趣的是,通过水平基因转移获得的证据很少,显然倾向于进化。此外,似乎已获得的基因以及具有非经典拓扑排列的基因被聚类到系统发生树中的不同组中,表明某些祖先的关联。本研究确定的簇内保守性将为将来的分子分析提供有用的平台。

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