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Exploring the Evolution of Virulence Factors through Bioinformatic Data Mining

机译:通过生物信息化数据挖掘探索毒力因子的演变

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The molecular evolution of virulence factors is a central theme in our understanding of bacterial pathogenesis and host-microbe interactions. Using bioinformatics and genome data mining, recent studies have shed light on the evolution of important virulence factor families and the mechanisms by which they have adapted and diversified in function. This perspective highlights three complementary approaches useful for studying the molecular evolution of virulence factors: identification and analysis of virulence factor homologs, detection of adaptations or functional shifts, and computational prediction of novel virulence factor families. Each of these research directions is associated with distinct questions, approaches, and challenges for future work. Moving forward, bioinformatics will continue to play a critical role in exploring the evolution of virulence factors, including those that target humans. By reconstructing past processes and events, we will be able to better interpret newly sequenced microbial genomes and detect future pathoadaptations.
机译:毒力因子的分子演变是我们对细菌发病机制和宿主微生物相互作用的理解中的中心主题。使用生物信息学和基因组数据挖掘,最近的研究对重要的毒力因子家族的演变和它们在功能中改编和多样化的机制上进行了光线。这种观点突出了三种可用于研究毒力因子的分子演变的互补方法:鉴定和分析毒力因子同源物,对适应或功能变化的检测,以及新的毒力因子家族的计算预测。这些研究方向中的每一个都与未来工作的不同问题,方法和挑战有关。向前发展,生物信息学将继续在探索毒力因子的演变方面发挥关键作用,包括那些针对人类的人。通过重建过去的过程和事件,我们将能够更好地解释新测序的微生物基因组并检测未来的道路进度。

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