Mukaihara Takafumi, Tamura Naoyuki, Murata Yukio, Iwabuchi Masaki
Research Institute for Biological Sciences, Okayama (RIBS), 7549-1 Yoshikawa, Kayo-cho, Okayama 716-1241, Japan.
Mol Microbiol. 2004 Nov;54(4):863-75. doi: 10.1111/j.1365-2958.2004.04328.x.
As in many other Gram-negative phytopathogenic bacteria, the Hrp type III secretion system is essential for the pathogenicity of Ralstonia solanacearum on host plants. The expression of most of the type III effector genes previously isolated from R. solanacearum is co-regulated with those of hrp genes by an AraC-type transcriptional activator, HrpB. In order to isolate type III-related pathogenicity genes, we screened hrpB-regulated genes in R. solanacearum. Using a transposon-based system, we isolated 30 novel hpx (hrpB-dependent expression) genes outside the hrp gene cluster. Most of the hpx genes contain a PIP (plant-inducible promoter) box-like motif in their putative promoter regions. Seven hpx genes encoded homologues of known type III effectors and type III-related proteins found in other animal and plant pathogens. Four encoded known enzymes, namely, glyoxalase I, Nudix hydrolase, spermidine synthase and transposase. Interestingly, six hpx genes encoded two types of leucine-rich repeat (LRR) protein. Products of the remaining genes did not show any significant homology to known proteins. We also identified two novel hrpB-regulated genes, hpaZ and hpaB, downstream of hrpY in the hrp cluster. The hpaB gene of R. solanacearum, but not hpaZ, was required for both the pathogenicity and ability to induce hypersensitive reaction on plants. We show that a hpaB null mutant still produces Hrp pili on the cell surface although it shows a typical Hrp-defective phenotype on plants.
与许多其他革兰氏阴性植物致病细菌一样,Hrp III型分泌系统对于青枯雷尔氏菌在寄主植物上的致病性至关重要。先前从青枯雷尔氏菌中分离出的大多数III型效应子基因的表达,与hrp基因的表达一起,受一种AraC型转录激活因子HrpB的共同调控。为了分离与III型相关的致病基因,我们在青枯雷尔氏菌中筛选了受hrpB调控的基因。利用基于转座子的系统,我们在hrp基因簇之外分离出了30个新的hpx(hrpB依赖性表达)基因。大多数hpx基因在其假定的启动子区域含有一个类PIP(植物诱导型启动子)框基序。7个hpx基因编码在其他动植物病原体中发现的已知III型效应子和III型相关蛋白的同源物。4个编码已知酶,即乙二醛酶I、Nudix水解酶、亚精胺合成酶和转座酶。有趣的是,6个hpx基因编码两种富含亮氨酸重复序列(LRR)的蛋白。其余基因的产物与已知蛋白没有任何显著同源性。我们还在hrp簇中hrpY的下游鉴定出了两个新的受hrpB调控的基因hpaZ和hpaB。青枯雷尔氏菌的hpaB基因而非hpaZ基因,对于植物致病性和诱导过敏反应的能力都是必需的。我们发现,一个hpaB缺失突变体尽管在植物上表现出典型的Hrp缺陷表型,但在细胞表面仍能产生Hrp菌毛。