Pérez-Quintero Alvaro L, Rodriguez-R Luis M, Cuesta-Morrondo Sara, Hakalová Eliška, Betancurt-Anzola Daniela, Valera Laura Carolina Camelo, Cardenas Luis Alberto Chica, Matiz-Céron Luisa, Jacobs Jonathan M, Roman-Reyna Veronica, Muñoz Alejandro Reyes, Giraldo Adriana Jimena Bernal, Koebnik Ralf
Plant Health Institute of Montpellier (PHIM), University of Montpellier, CIRAD, INRAE, Institut Agro, IRD, Montpellier, France.
Department of Microbiology and Digital Science Center (DiSC), University of Innsbruck, Innsbruck, Austria.
Phytopathology. 2023 Aug;113(8):1387-1393. doi: 10.1094/PHYTO-12-22-0477-SC. Epub 2023 Sep 24.
Strains of pv. cause bacterial blight of cotton, a potentially serious threat to cotton production worldwide, including in sub-Saharan countries. Development of disease symptoms, such as water soaking, has been linked to the activity of a class of type 3 effectors, called transcription activator-like (TAL) effectors, which induce susceptibility genes in the host's cells. To gain further insight into the global diversity of the pathogen, to elucidate their repertoires of TAL effector genes, and to better understand the evolution of these genes in the cotton-pathogenic xanthomonads, we sequenced the genomes of three African strains of pv. using nanopore technology. We show that the cotton-pathogenic pathovar of is a monophyletic lineage containing at least three distinct genetic subclades, which appear to be mirrored by their repertoires of TAL effectors. We observed an atypical level of TAL effector gene pseudogenization, which might be related to resistance genes that are deployed to control the disease. Our work thus contributes to a better understanding of the conservation and importance of TAL effectors in the interaction with the host plant, which can inform strategies for improving resistance against bacterial blight in cotton.
棉花黄单胞菌致病变种的菌株会引发棉花细菌性枯萎病,这对包括撒哈拉以南国家在内的全球棉花生产构成潜在的严重威胁。诸如水渍状等病害症状的出现与一类被称为转录激活样(TAL)效应子的Ⅲ型效应子的活性有关,这些效应子可诱导宿主细胞中的感病基因。为了进一步深入了解该病原菌的全球多样性,阐明其TAL效应子基因库,并更好地理解这些基因在棉花致病黄单胞菌中的进化情况,我们利用纳米孔技术对三株非洲棉花黄单胞菌致病变种的基因组进行了测序。我们发现,棉花致病黄单胞菌致病变种是一个单系谱系,包含至少三个不同的遗传亚分支,这似乎与其TAL效应子库相对应。我们观察到TAL效应子基因假基因化的非典型水平,这可能与用于控制该病的抗性基因有关。因此,我们的工作有助于更好地理解TAL效应子在与宿主植物相互作用中的保守性和重要性,这可为提高棉花对细菌性枯萎病的抗性策略提供参考。