Comprehensive genome sequence analysis of Ralstonia solanacearum gd-2, a phylotype I sequevar 15 strain collected from a tobacco bacterial phytopathogen
作者:Zhiliang Xiao, Li GuangCan, Aiguo Yang, Zhengwen Liu, Min Ren, Lirui Cheng, Dan Liu, Caihong Jiang, Liuying Wen, Shengxin Wu, Yazhi Cheng, Wen Yu, Ruimei Geng · 发表于:Frontiers in Microbiology · 年份:2024 · DOI:10.3389/fmicb.2024.1335081 · 被引用次数:6 · 研究领域:Plant Pathogenic Bacteria Studies、Genomics and Phylogenetic Studies、Infections and bacterial resistance
Introduction Plant bacterial wilt is an important worldwide disease caused by Ralstonia solanacearum which is a complex of species. Methods In this study, we identified and sequenced the genome of R. solanacearum strain gd-2 isolated from tobacco. Results Strain gd-2 was identified as R. solanacearum species complex (RSSC) phylotype I sequevar 15 and exhibited strong pathogenicity to tobacco. The genome size of gd-2 was 5.93 Mb, including the chromosomes (3.83 Mb) and the megaplasmid (2.10 Mb). Gene prediction results showed that 3,434 and 1,640 genes were identified in the chromosomes and plasmids, respectively. Comparative genomic analysis showed that gd-2 exhibited high conservation with ten highly similar strain genomes and the differences between gd-2 and other genomes were mainly located at positions GI12-GI14. 72 type III effectors (T3Es) were identified and RipAZ2 was a T3E specific to gd-2 compared with other eight sequenced strain. Discussion Our study provides a new basis and evidence for studying the pathogenic mechanism of R. solanacearum .