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Comparative genomics reveal pathogenicity‐related loci in Pseudomonas syringae pv. actinidiae biovar 3

机译:比较基因组学揭示了丁香假单胞菌PV中的致病性相关基因座。猕猴桃biovar 3

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摘要

Bacterial canker of kiwifruit, is a severe global disease caused by pv. (Psa). Here, we found that Psa biovar 3 (Psa3) was the only biovar consisting of three widely distributed clades in the largest Chinese kiwifruit cultivated area. Comparative genomics between the three clades revealed 13 polymorphic genes, each of which had multiple intra‐clade variations. For instance, we confirmed that the polymorphic gene, which encodes a periplasmic protein CopA that is translocated by the Twin‐arginine targeting (Tat) system, was involved in copper tolerance. We also found extensive variation in pathogenicity amongst strains within each genetically monomorphic clade. Accordingly, the pathogenic determinants of Psa3 were identified via a genomic comparison of phenotypically different strains within each clade. A case study of the high‐ and low‐virulence strains in the clade 2 of Psa3 revealed that an variant involved in growth and virulence, while a conserved locus 930 bp upstream of the gene in the Type III secretion system (T3SS) cluster was required for full pathogenicity on kiwifruit and elicitation of the hypersensitivity response on non‐host . The ‘‐930’ locus is involved in transcriptional regulation of and modulates T3SS function via the hierarchical ‘HrpR/S‐HrpL‐T3SS/effector’ regulatory cascade in Psa. Our results provide insights into the molecular basis underlying the genetic diversification and evolution of pathogenicity in Psa3 since kiwifruit canker emerged in China in the 1980s.
机译:奇异果的细菌性溃疡是由PV引起的严重的全球性疾病。 (PSA)。在这里,我们发现Psa biovar 3(Psa3)是最大的中国奇异果种植区中唯一由三个分布广泛的进化枝组成的生物变种。三个进化枝之间的比较基因组学揭示了13个多态基因,每个基因都有多个进化枝内变异。例如,我们证实多态性基因编码铜质蛋白CopA,该蛋白被双精氨酸靶向(Tat)系统转运,与铜耐受性有关。我们还发现每个遗传单态进化枝内菌株之间的致病性差异很大。因此,通过对每个进化枝中表型不同的菌株进行基因组比较,可以确定Psa3的致病因素。对Psa3第2进化枝中高毒力和低毒力菌株的案例研究表明,一个变异参与了生长和毒力,而在III型分泌系统(T3SS)簇中该基因上游需要一个保守的基因座930 bp。对猕猴桃具有完全的致病性,对非寄主的超敏反应有启发作用。 “ -930”基因座通过Psa中的分层“ HrpR / S-HrpL-T3SS /效应子”调节级联参与T3SS功能的转录调控和调节。自1980年代中国出现奇异果溃疡以来,我们的研究结果提供了对Psa3遗传多样性和致病性进化基础的分子基础的见解。

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