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Whole-genome comparative analysis of three phytopathogenic Xylella fastidiosa strains

机译:三种植物病原性小木耳菌株的全基因组比较分析

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Xylella fastidiosa (Xf) causes wilt disease in plants and is responsible for major economic and crop losses globally. Owing to the public importance of this phytopathogen we embarked on a comparative analysis of the complete genome of Xf pv citrus and the partial genomes of two recently sequenced strains of this species: Xf pv almond and Xf pv oleander, which cause leaf scorch in almond and oleander plants, respectively. We report a reanalysis of the previously sequenced Xf 9a5c (CMC, citrus) strain and the two "gapped" Xf genomes revealing ORFs encoding critical functions in pathogenicity and conjugative transfer. Second, a detailed whole-genome functional comparison was based on the three sequenced Xf strains, identifying the unique genes present in each strain, in addition to those shared between strains. Third, an "in silico" cellular reconstruction of these organisms was made, based on a comparison of their core functional subsystems that led to a characterization of their conjugative transfer machinery, identification of potential differences in their adhesion mechanisms, and highlighting of the absence of a classical quorum-sensing mechanism. This study demonstrates the effectiveness of comparative analysis strategies in the interpretation of genomes that are closely related.
机译:fastylosa(Xf)引起植物枯萎病,是造成全球主要经济和作物损失的原因。由于这种植物病原体的公众重要性,我们着手对Xf pv柑橘的完整基因组与该物种的两个最近测序菌株的部分基因组进行了比较分析:Xf pv杏仁和Xf pv夹竹桃,它们导致杏仁的叶焦烧和夹竹桃植物。我们报告了先前测序的Xf 9a5c(CMC,柑橘)菌株和两个“缺口” Xf基因组的重新分析,揭示了ORFs编码致病性和结合转移中的关键功能。其次,基于三个测序的Xf菌株进行了详细的全基因组功能比较,除了每个菌株之间共享的基因之外,还鉴定了每个菌株中存在的独特基因。第三,基于对这些生物的核心功能子系统的比较,对这些生物进行了“ in silico”细胞重建,从而对它们的共轭转移机制进行了表征,确定了其粘附机制的潜在差异,并着重指出了缺乏经典的群体感应机制。这项研究证明了比较分析策略在解释密切相关的基因组中的有效性。

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