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首页> 外文期刊>Microbial Pathogenesis >Molecular analysis of the hrp gene cluster in Xanthomonas oryzae pathovar oryzae KACC10859.
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Molecular analysis of the hrp gene cluster in Xanthomonas oryzae pathovar oryzae KACC10859.

机译:水稻黄单胞菌病变稻KACC10859中hrp基因簇的分子分析。

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摘要

Xanthomonas oryzae pathovar oryzae is the causal agent of rice bacterial blight. The plant pathogenic bacterium X. oryzae pv. oryzae expresses a type III secretion system that is necessary for both the pathogenicity in susceptible hosts and the induction of the hypersensitive response in resistant plants. This specialized protein transport system is encoded by a 32.18kb hrp (hypersensitive response and pathogenicity) gene cluster. The hrp gene cluster is composed of nine hrp, nine hrc (hrp conserved) and eight hpa (hrp-associated) genes and is controlled by HrpG and HrpX, which are known as regulators of the hrp gene cluster. Before mutational analysis of these hrp genes, the transcriptional linkages of the core region of the hrp gene cluster from hpaB to hrcC of the X. oryzae pv. oryzae KACC10859 was determined and the non-polarity of EZTn5 insertional mutagenesis was demonstrated by reverse transcription polymerase chain reaction. Pathogenicity assays of these non-polar hrp mutants were carried out on the susceptible rice cultivar, Milyang-23. According to the results of these assays, all hrp-hrc, except hrpF, and hpaB mutants lost their pathogenicity, which indicates that most hrp-hrc genes encode essential pathogenicity factors. On the other hand, most hpa mutants showed decreased virulence in a different pattern, i.e., hpa genes are not essential but are important for pathogenicity.
机译:Xanthomonas oryzae致病性水稻是稻瘟病的病因。植物病原细菌米曲霉PV。稻米表达III型分泌系统,这对于易感宿主的致病性和在抗性植物中诱导超敏反应都是必需的。这种专门的蛋白质转运系统由32.18kb hrp(过敏反应和致病性)基因簇编码。 hrp基因簇由9个hrp,9个hrc(hrp保守)和8个hpa(hrp相关)基因组成,并由HrpG和HrpX控制,它们被称为hrp基因簇的调节子。在对这些hrp基因进行突变分析之前,hrp基因核心区域的转录连接从米曲霉pv的hpaB到hrcC簇。确定了稻米KACC10859,并通过逆转录聚合酶链反应证明了EZTn5插入诱变的非极性。这些非极性hrp突变体的致病性分析是在易感水稻品种Milyang-23上进行的。根据这些测定的结果,除hrpF和hpaB突变体外,所有hrp-hrc均丧失了致病性,这表明大多数hrp-hrc基因编码必需的致病性因子。另一方面,大多数hpa突变体以不同的模式显示出降低的毒力,即,hpa基因不是必需的,但对致病性很重要。

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