Department of Plant Pathology and Microbiology and The Otto Warburg Minerva Center for Agricultural Biotechnology, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel.
Mol Plant Pathol. 2012 Aug;13(6):556-67. doi: 10.1111/j.1364-3703.2011.00771.x. Epub 2011 Dec 18.
A recombinase-based in vivo expression technology (RIVET) approach with Xanthomonas campestris pv. vesicatoria (Xcv) revealed that lipA, annotated as putative secreted lipase, is expressed during the interaction between this pathogen and tomato. Here, the tnpR and uidA reporter genes were used to show that lipA is strongly induced in XVM2 minimal medium and during the early stages of tomato infection by Xcv. A mutant strain impaired in lipA was generated by insertional mutagenesis. This mutant grew in a similar manner to the wild-type in rich medium, but its growth was significantly compromised in a medium containing olive oil as a single carbon source. The lipolytic activity of the extracellular fraction of the lipA mutant was reduced significantly relative to that of the wild-type strain, thus confirming that lipA indeed encodes a functional secreted enzyme with lipolytic activity. A plasmid carrying a wild-type copy of lipA complemented the lipA mutant for extracellular lipolytic activity. Dip inoculation experiments with tomato lines Hawaii 7998 (H7998) and Micro Tom showed that the lipA mutant grew to a lesser extent than the wild-type in tomato leaves. Following leaf syringe infiltrations, the mutant strain induced disease symptoms that were less severe than those induced by the wild-type strain, supporting a significant role of lipA in the pathogenicity of Xcv.
利用黄单胞菌 pv.vesicatoria(Xcv)的基于重组酶的体内表达技术(RIVET)方法表明,注释为假定分泌脂肪酶的 lipA 在该病原体与番茄相互作用期间表达。在这里,tnpR 和 uidA 报告基因被用来表明 lipA 在 XVM2 最小培养基中和 Xcv 早期感染番茄时强烈诱导。通过插入诱变产生了 lipA 缺失突变体。该突变体在富含培养基中的生长方式与野生型相似,但在含有橄榄油作为唯一碳源的培养基中的生长明显受到限制。与野生型菌株相比,lipA 突变体的细胞外部分的脂解活性显著降低,从而证实 lipA 确实编码具有脂解活性的功能性分泌酶。携带 lipA 野生型拷贝的质粒补充了 lipA 突变体的细胞外脂解活性。用番茄品系 Hawaii 7998(H7998)和 Micro Tom 进行的 Dip 接种实验表明,lipA 突变体在番茄叶片中的生长程度低于野生型。在叶片注射器渗透后,突变菌株诱导的疾病症状比野生型菌株诱导的疾病症状轻,这支持 lipA 在 Xcv 致病性中的重要作用。