Sorbonne Université, INRAE, IRD, CNRS, UPEC, UMR 7618 Institut d'Écologie et des Sciences de l'Environnement de Paris, Paris, France.
Université de Lyon, CNRS, UCBL, INSA, UMR5240 Microbiologie, Adaptation et Pathogénie, Villeurbanne, France.
Environ Microbiol. 2023 Nov;25(11):2465-2480. doi: 10.1111/1462-2920.16479. Epub 2023 Aug 7.
Historically, research on Soft Rot Pectobacteriacea (SRP) has focused on economically important crops and ornamentals and knowledge of these bacteria outside the plant context remains poorly investigated. Recently, two closely related species Pectobacterium aquaticum and Pectobacterium quasiaquaticum were isolated from water and have not been isolated from any plant yet. To identify the distinctive characteristics of these two species, we performed a comparative genomic analysis of 80 genomes representing 19 Pectobacterium species and performed an evolutionary reconstruction. Both water species underwent a reduction in genome size associated with a high pseudogene content. A high gene loss was predicted at the emergence of both species. Among the 199 gene families missing from both P. aquaticum and P. quasiaquaticum genomes but present in at least 80% of other Pectobacterium genomes, COG analysis identified many genes involved in nutrient transport systems. In addition, many type II secreted proteins were also missing in both species. Phenotypic analysis revealed that both species had reduced pectinolytic activity, a biofilm formation defect, were highly motile and had reduced virulence on several plants. These genomic and phenotypic data suggest that the ecological niche of P. aquaticum and P. quasiaquaticum may differ from that of other Pectobacterium species.
从历史上看,软腐果胶杆菌(SRP)的研究主要集中在经济上重要的作物和观赏植物上,而这些细菌在植物环境之外的知识仍然研究甚少。最近,两种密切相关的物种——水生果胶杆菌和准水生果胶杆菌从水中分离出来,尚未从任何植物中分离出来。为了确定这两个物种的独特特征,我们对代表 19 种果胶杆菌的 80 个基因组进行了比较基因组分析,并进行了进化重建。这两个水生物种的基因组大小都发生了缩小,伴随着高假基因含量。在这两个物种的出现过程中,预计会有大量基因丢失。在水生果胶杆菌和准水生果胶杆菌基因组中缺失但在至少 80%的其他果胶杆菌基因组中存在的 199 个基因家族中,COG 分析确定了许多参与营养运输系统的基因。此外,这两个物种都缺失了许多 II 型分泌蛋白。表型分析表明,这两个物种的果胶酶活性降低,生物膜形成缺陷,运动能力强,对几种植物的毒力降低。这些基因组和表型数据表明,水生果胶杆菌和准水生果胶杆菌的生态位可能与其他果胶杆菌物种不同。