首页> 外文期刊>Journal of General Plant Pathology >Involvement of mitogen-activated protein kinase in the induction of StrbohC and StrbohD genes in response to pathogen signals in potato
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Involvement of mitogen-activated protein kinase in the induction of StrbohC and StrbohD genes in response to pathogen signals in potato

机译:丝裂原活化蛋白激酶参与诱导StrbohC和StrbohD基因响应马铃薯中的病原体信号

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The respiratory burst oxidase homolog (rboh), a plant homolog of the catalytic subunit of phagocyte NADPH oxidase (gp91 phox ), has been implicated in O2 ? generation. In the previous study, we reported that StrbohA is constitutively expressed at a low level, whereas StrbohB is upregulated after pathogen signals are perceived in potato tubers. To gain a better understanding about the role of rboh in the defense response in potato leaves, we investigated the regulatory mechanisms of the gene. StrbohB gene was activated in response to an avirulent race of Phytophthora infestans or to hyphal wall components (HWC) from the pathogen; however, levels of expression were very low. We isolated two novel rboh cDNAs, StrbohC and StrbohD, by virtue of the sequence information from the tomato whitefly-induced gene 1 (LeWfi1) and tomato TC121349, respectively. The expression of StrbohC and StrbohD was drastically upregulated in the potato leaves inoculated with P. infestans or treated with HWC elicitor. Mitogen-activated protein kinase (MAPK) is known to play a pivotal role in the oxidative burst. The transcript accumulation induced by HWC treatment was blocked by U0126, which is a specific inhibitor of MAPK kinase (MAPKK). Conversely, the StrbohC and StrbohD genes were upregulated, driven by a pathogen-inducible promoter, in transgenic potato leaves that carry a constitutively active mutant of the MAPKK, StMEK1DD, that activates defense-related MAPKs. These results suggest that a MAPK cascade is involved in the process leading to the expression of the StrbohC and StrbohD genes.
机译:呼吸爆发性氧化酶同源物(rboh)是吞噬细胞NADPH氧化酶的催化亚基(gp91 phox )的植物同源物,与O2的产生有关。在先前的研究中,我们报道了在马铃薯块茎中发现病原体信号后,StrbohA的组成型表达水平较低,而StrbohB的表达上调。为了更好地了解rboh在马铃薯叶片防御反应中的作用,我们研究了该基因的调控机制。 StrbohB基因被激活以响应致病疫霉无毒种或病原体的菌丝壁成分(HWC)。但是,表达水平很低。我们分别从番茄粉虱诱导的基因1(LeWfi1)和番茄TC121349的序列信息中分离了两个新颖的rboh cDNA,StrbohC和StrbohD。在感染了致病疫霉或用HWC激发子处理的马铃薯叶片中,StrbohC和StrbohD的表达急剧上调。已知丝裂原活化的蛋白激酶(MAPK)在氧化爆发中起关键作用。 HWC处理诱导的转录本积累被U0126阻断,U0126是MAPK激酶(MAPKK)的特异性抑制剂。相反,在病原体诱导型启动子的驱动下,StrbohC和StrbohD基因被上调,该基因携带具有MAPKK组成型活性突变体StMEK1DD 的转基因马铃薯叶片,该突变体激活与防御相关的MAPKs。这些结果表明MAPK级联参与导致StrbohC和StrbohD基因表达的过程。

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