Nascimento Rafael, Gouran Hossein, Chakraborty Sandeep, Gillespie Hyrum W, Almeida-Souza Hebréia O, Tu Aye, Rao Basuthkar J, Feldstein Paul A, Bruening George, Goulart Luiz R, Dandekar Abhaya M
Plant Sciences Department, University of California, Davis, 1 Shields Ave, Davis CA, 95616, USA.
Institute of Genetics and Biochemistry, Federal University of Uberlândia, Av. Amazonas, Bloco 2E, Campus Umuarama, 38400-902, Uberlândia MG, Brazil.
Sci Rep. 2016 Jan 12;6:18598. doi: 10.1038/srep18598.
Pierce's disease (PD) of grapevines is caused by Xylella fastidiosa (Xf), a xylem-limited gamma-proteobacterium that is responsible for several economically important crop diseases. The occlusion of xylem elements and interference with water transport by Xf and its associated biofilm have been posited as the main cause of PD symptom development; however, Xf virulence mechanisms have not been described. Analysis of the Xf secretome revealed a putative lipase/esterase (LesA) that was abundantly secreted in bacterial culture supernatant and was characterized as a protein ortholog of the cell wall-degrading enzyme LipA of Xanthomonas strains. LesA was secreted by Xf and associated with a biofilm filamentous network. Additional proteomic analysis revealed its abundant presence in outer membrane vesicles (OMVs). Accumulation of LesA in leaf regions associated positively with PD symptoms and inversely with bacterial titer. The lipase/esterase also elicited a hypersensitive response in grapevine. Xf lesA mutants were significantly deficient for virulence when mechanically inoculated into grapevines. We propose that Xf pathogenesis is caused by LesA secretion mediated by OMV cargos and that its release and accumulation in leaf margins leads to early stages of observed PD symptoms.
葡萄的皮尔氏病(PD)由木质部受限的γ-变形菌——嗜木质部杆菌(Xf)引起,该细菌还会引发几种具有重要经济影响的作物病害。Xf及其相关生物膜导致木质部元件堵塞并干扰水分运输,这被认为是PD症状出现的主要原因;然而,Xf的致病机制尚未得到描述。对Xf分泌蛋白组的分析揭示了一种假定的脂肪酶/酯酶(LesA),它在细菌培养上清液中大量分泌,并且被鉴定为与黄单胞菌属菌株的细胞壁降解酶LipA具有直系同源关系的蛋白质。LesA由Xf分泌,并与生物膜丝状网络相关。进一步的蛋白质组学分析表明它在外膜囊泡(OMV)中大量存在。LesA在与PD症状呈正相关且与细菌滴度呈负相关的叶区域中积累。这种脂肪酶/酯酶还会在葡萄中引发超敏反应。当通过机械接种将Xf lesA突变体接种到葡萄中时,其致病力明显不足。我们认为,Xf的致病机制是由OMV所载物质介导的LesA分泌引起的,并且LesA在叶缘的释放和积累导致了观察到的PD症状的早期阶段。