生物
果胶杆菌
果胶杆菌胡萝卜软腐
遗传学
GenBank公司
基因组
比较基因组学
系统发育树
水平基因转移
基因
全基因组测序
亚种
基因组学
古生物学
作者
Liping Yang,Wenhui Lou,Yao Liao,Shu Che,Jianmei Xu,Wei Deng,Jianhua Zhang,Xiaolin Li,Baishi Hu,Jiaqin Fan
出处
期刊:Plant Disease
[American Phytopathological Society]
日期:2025-06-24
卷期号:: PDIS08241785RE-PDIS08241785RE
标识
DOI:10.1094/pdis-08-24-1785-re
摘要
Strains from the genus of Pectobacterium can cause soft rot in numerous important plants, leading to significant losses. 16S rRNA gene sequences reliably identify genera, but species identification is sometimes challenging due to indistinguishable species or strains and unrecognized new taxa. Therefore, a dependable and straightforward classification method is needed. In this study, we analyzed the complete genome sequence and predicted genome components of Pectobacterium strains. We also assessed their genetic relationships using average nucleotide identity and in silico DNA-DNA hybridization, alongside phylogenetic analysis. This was done by examining the whole-genome sequences of 14 new strains isolated in our laboratory, responsible for plant soft rot, and comparing them with 64 strains' genome sequences available in GenBank. The results reveal that three subspecies of P. carotovorum with genome sequences deposited in GenBank (PccS1, PCC21, and strain 67) need to be reclassified as separate species and also confirm that our new isolated strains are accurately categorized at the species level. Additionally, the virulence and adaptability of certain strains of Pectobacterium (PccS1, SCRI1043, and SCC3193) are influenced by horizontal acquisition genes. Furthermore, our findings suggest that the diversity in the car gene cluster among Pectobacterium strains likely stems from gene losing, as well as the auto-induced regulatory mechanisms underlying virulence determinant gene activation, and Car biosynthesis might act in different ways in PccS1, enhancing our knowledge of their genomic traits through comparative studies.
科研通智能强力驱动
Strongly Powered by AbleSci AI