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首页> 外文期刊>Plant Molecular Biology >GhMPK7, a novel multiple stress-responsive cotton group C MAPK gene, has a role in broad spectrum disease resistance and plant development
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GhMPK7, a novel multiple stress-responsive cotton group C MAPK gene, has a role in broad spectrum disease resistance and plant development

机译:GhMPK7是一种新型的多重胁迫响应棉花C MAPK基因基因,在广谱抗病性和植物发育中起作用

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Mitogen-activated protein kinase (MAPK) cascades play a pivotal role in environmental responses and developmental processes in plants. Previous researches mainly focus on the MAPKs in groups A and B, and little is known on group C. In this study, we isolated and characterized GhMPK7, which is a novel gene from cotton belonging to the group C MAPK. RNA blot analysis indicated that GhMPK7 transcript was induced by pathogen infection and multiple defense-related signal molecules. Transgenic Nicotina benthamiana overexpressing GhMPK7 displayed significant resistance to fungus Colletotrichum nicotianae and virus PVY, and the transcript levels of SA pathway genes were more rapidly and strongly induced. Furthermore, the transgenic N. benthamiana showed reduced ROS-mediated injuries by upregulating expression of oxidative stress-related genes. Interestingly, the transgenic plants germinated earlier and grew faster in comparison to wild-type plants. β-glucuronidase activity driven by the GhMPK7 promoter was detected in the apical meristem at the vegetative stage, and it was enhanced by treatments with signal molecules and phytohormones. These results suggest that GhMPK7 might play an important role in SA-regulated broad-spectrum resistance to pathogen infection, and that it is also involved in regulation of plant growth and development.
机译:丝裂原激活的蛋白激酶(MAPK)级联在植物的环境响应和发育过程中起着关键作用。先前的研究主要集中在A和B组中的MAPKs,而对C组知之甚少。在这项研究中,我们分离并鉴定了GhMPK7,这是一个属于C MAPK组的棉花新基因。 RNA印迹分析表明,GhMPK7转录物是由病原体感染和多种防御相关信号分子诱导的。过表达GhMPK7的转基因烟草尼古丁对烟草真菌炭疽菌和病毒PVY表现出显着的抗性,并且SA途径基因的转录水平被更快,更强地诱导。此外,转基因本氏烟草显示出通过上调氧化应激相关基因的表达而减少了ROS介导的损伤。有趣的是,与野生型植物相比,转基因植物更早发芽并且生长更快。在营养阶段的根尖分生组织中检测到由GhMPK7启动子驱动的β-葡萄糖醛酸苷酶活性,并通过信号分子和植物激素的处理增强了β-葡萄糖醛酸苷酶的活性。这些结果表明,GhMPK7可能在SA调节的广谱抗病原体感染中起重要作用,并且它还参与植物生长发育的调节。

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