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首页> 外文期刊>Plant biology >The overexpression of a maize mitogen-activated protein kinase gene (ZmMPK5) confers salt stress tolerance and induces defence responses in tobacco
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The overexpression of a maize mitogen-activated protein kinase gene (ZmMPK5) confers salt stress tolerance and induces defence responses in tobacco

机译:玉米有丝分裂原激活的蛋白激酶基因(ZmMPK5)的过表达赋予盐胁迫耐性并诱导烟草的防御反应

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摘要

As sessile organisms, plants are exposed to potential dangers, including multiple biotic and abiotic stresses. The mitogen-activated protein kinase (MAPK) is a universal signalling pathways involved in these processes. A previous study showed that maize ZmMPK5 is induced by various stimuli at transcriptional and post-translational levels. In this study, ZmMPK5 was overexpressed in tobacco to further analyse its biological functions. Under salt and oxidative stresses, ZmMPK5-overexpressing lines displayed less severe damage and stronger growth phenotypes corresponding to a series of physiological changes. In addition, the transgenic lines accumulated less reactive oxygen species (ROS) and had higher levels of antioxidant enzyme activity and metabolites than wild-type (WT) plants following NaCl treatment. Quantitative RT-PCR revealed that the expression of ROS-related and stress-responsive genes was higher in transgenic plants than in WT plants. Furthermore, transgenic lines exhibited enhanced resistance to viral pathogens, and expressed constitutively higher transcript levels of pathogenesis-related genes, such as PR1a, PR4, PR5 and EREBP. Taken together, these results demonstrated that ZmMPK5 is involved in salt stress, oxidative stress and pathogen defence signalling pathways, and its function may be at least partly devoted to efficiently eliminating ROS accumulation under salt stress.
机译:作为固着生物,植物面临潜在的危险,包括多种生物和非生物胁迫。有丝分裂原激活的蛋白激酶(MAPK)是参与这些过程的通用信号通路。先前的研究表明,玉米ZmMPK5是由转录和翻译后水平的各种刺激诱导的。在这项研究中,ZmMPK5在烟草中过表达,以进一步分析其生物学功能。在盐和氧化胁迫下,过表达ZmMPK5的品系显示出较少的严重损伤,并且表现出与一系列生理变化相对应的较强的生长表型。另外,与NaCl处理后的野生型(WT)植物相比,转基因品系积累较少的活性氧(ROS),并且具有较高水平的抗氧化酶活性和代谢产物。定量RT-PCR显示,与野生型植物相比,转基因植物中ROS相关基因和胁迫响应基因的表达更高。此外,转基因品系显示出对病毒病原体的增强抗性,并表达与病程相关的基因(例如PR1a,PR4,PR5和EREBP)的组成型更高的转录水平。综上所述,这些结果表明ZmMPK5参与盐胁迫,氧化胁迫和病原体防御信号传导途径,并且其功能可能至少部分致力于有效消除盐胁迫下的ROS积累。

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