School of Horticulture, Anhui Agricultural University, Hefei 230036, People's Republic of China.
Lishui Academy of Agricultural and Forestry Sciences, Lishui 323000, People's Republic of China.
Phytopathology. 2021 May;111(5):789-798. doi: 10.1094/PHYTO-07-20-0287-R. Epub 2021 Apr 15.
The Gram-negative bacterial species causes summer canker in kiwifruit plants. However, little is known about its virulence factors and mechanisms of genetic adaptation. We aimed to identify the key determinants that control the virulence of in kiwifruit by genomic and functional analyses. Analysis of four . isolates indicated low genetic variability with an average of 98.7% genome-level sequence similarity and 82% shared protein-coding gene content. Phylogenetic analysis, based on both bulk single nucleotide polymorphisms (SNPs) and single-copy genes, revealed that strains cluster into a single clade, which is closely related to the clades of (species with a completely different host range). Through comparison between these two clades of strains, 746 unique core orthologs/genes were clustered in the clades of , especially key virulence determinants involved in the biosynthesis of secretion systems (type III, IV, and VI), iron, flagellar structure, and the quorum-sensing system. Our results provide insights into the pathogenomics underlying the genetic diversification and evolution of pathogenicity in species.
革兰氏阴性细菌种 引起猕猴桃夏季溃疡病。然而,人们对其毒力因子和遗传适应机制知之甚少。我们旨在通过基因组和功能分析鉴定控制 在猕猴桃中致病力的关键决定因素。对四个. 分离株的分析表明,遗传变异性低,平均基因组水平序列相似性为 98.7%,共享的蛋白编码基因含量为 82%。基于大量单核苷酸多态性 (SNP) 和单拷贝基因的系统发育分析表明, 菌株聚类为一个单系群,与 (宿主范围完全不同的物种)的分支密切相关。通过对这两个菌株分支的比较,746 个独特的核心直系同源物/基因聚类在 分支中,特别是涉及分泌系统(III、IV 和 VI 型)、铁、鞭毛结构和群体感应系统合成的关键毒力决定因素。我们的研究结果为了解 种的遗传多样性和致病性进化的病原体组学提供了线索。