Kim Jung-Gun, Park Byoung Keun, Yoo Chang-Hyuk, Jeon Eunkyung, Oh Jonghee, Hwang Ingyu
School of Agricultural Biotechnology, Seoul National University, Suwon 441-744, Korea.
J Bacteriol. 2003 May;185(10):3155-66. doi: 10.1128/JB.185.10.3155-3166.2003.
We sequenced an approximately 29-kb region from Xanthomonas axonopodis pv. glycines that contained the Hrp type III secretion system, and we characterized the genes in this region by Tn3-gus mutagenesis and gene expression analyses. From the region, hrp (hypersensitive response and pathogenicity) and hrc (hrp and conserved) genes, which encode type III secretion systems, and hpa (hrp-associated) genes were identified. The characteristics of the region, such as the presence of many virulence genes, low G+C content, and bordering tRNA genes, satisfied the criteria for a pathogenicity island (PAI) in a bacterium. The PAI was composed of nine hrp, nine hrc, and eight hpa genes with seven plant-inducible promoter boxes. The hrp and hrc mutants failed to elicit hypersensitive responses in pepper plants but induced hypersensitive responses in all tomato plants tested. The Hrp PAI of X. axonopodis pv. glycines resembled the Hrp PAIs of other Xanthomonas species, and the Hrp PAI core region was highly conserved. However, in contrast to the PAI of Pseudomonas syringae, the regions upstream and downstream from the Hrp PAI core region showed variability in the xanthomonads. In addition, we demonstrate that HpaG, which is located in the Hrp PAI region of X. axonopodis pv. glycines, is a response elicitor. Purified HpaG elicited hypersensitive responses at a concentration of 1.0 micro M in pepper, tobacco, and Arabidopsis thaliana ecotype Cvi-0 by acting as a type III secreted effector protein. However, HpaG failed to elicit hypersensitive responses in tomato, Chinese cabbage, and A. thaliana ecotypes Col-0 and Ler. This is the first report to show that the harpin-like effector protein of Xanthomonas species exhibits elicitor activity.
我们对来自大豆细菌性斑点病菌(Xanthomonas axonopodis pv. glycines)的一个约29 kb的区域进行了测序,该区域包含Hrp III型分泌系统,并且我们通过Tn3 - gus诱变和基因表达分析对该区域的基因进行了表征。从该区域中,鉴定出了编码III型分泌系统的hrp(过敏反应和致病性)和hrc(hrp和保守)基因,以及hpa(hrp相关)基因。该区域的特征,如存在许多毒力基因、低G + C含量以及毗邻tRNA基因,满足了细菌中致病岛(PAI)的标准。该PAI由九个hrp、九个hrc和八个hpa基因组成,并带有七个植物诱导型启动子框。hrp和hrc突变体在辣椒植株中未能引发过敏反应,但在所有测试的番茄植株中诱导了过敏反应。大豆细菌性斑点病菌的Hrp PAI与其他黄单胞菌属物种的Hrp PAI相似,并且Hrp PAI核心区域高度保守。然而,与丁香假单胞菌的PAI不同,Hrp PAI核心区域上游和下游的区域在黄单胞菌中表现出变异性。此外,我们证明位于大豆细菌性斑点病菌Hrp PAI区域的HpaG是一种激发子。纯化的HpaG作为III型分泌效应蛋白,在浓度为1.0 μM时能在辣椒、烟草和拟南芥生态型Cvi - 0中引发过敏反应。然而,HpaG在番茄、大白菜以及拟南芥生态型Col - 0和Ler中未能引发过敏反应。这是首次报道表明黄单胞菌属的类harpin效应蛋白具有激发子活性。