首页> 外文期刊>Planta: An International Journal of Plant Biology >ZmMPK17, a novel maize group D MAP kinase gene, is involved in multiple stress responses
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ZmMPK17, a novel maize group D MAP kinase gene, is involved in multiple stress responses

机译:ZmMPK17,一个玉米新的D组MAP激酶基因,参与多种胁迫反应

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摘要

Plant mitogen-activated protein kinase (MAPK) cascades play a pivotal role in a range of biotic and abiotic stress responses. In this study, we isolated a novel group D MAPK gene, ZmMPK17, from maize (Zea mays L.). ZmMPK17 is localized mainly to the nucleus and its C-terminal domain extension is believed to be essential for this. Northern-blot analysis indicated that ZmMPK17 transcription is involved in response to exogenous signaling molecules such as abscisic acid, hydrogen peroxide, salicylic acid, jasmonic acid and ethylene and induced by low temperature and osmotic stress. Hydrogen peroxide and Ca ~(2+) mediate PEG-induced downregulation of ZmMPK17 at transcription level and Ca ~(2+) also mediates low temperature-induced expression of ZmMPK17. Overexpression of ZmMPK17 in tobacco (Nicotoniatobaccum) accumulated less reactive oxygen species under osmotic stress by affecting antioxidant defense systems. Transgenic tobacco exhibited enhanced tolerance to cold by means of an increased germination rate, and increased proline and soluble sugar levels relative to control plants. The transcription levels of NtERD10 genes were higher in ZmMPK17-overexpressing lines than in control plants under cold and osmotic stress conditions. ZmMPK17-overexpressing plants displayed enhanced resistance to viral pathogens, and the expression of the pathogenesis-related gene PR1a was significantly increased, indicating that ZmMPK17 might be involved in SA-mediated pathogen defense-signaling pathways.
机译:植物有丝分裂原激活的蛋白激酶(MAPK)级联在一系列生物和非生物胁迫响应中发挥关键作用。在这项研究中,我们从玉米(Zea mays L.)中分离了一个新的D MAPK组基因ZmMPK17。 ZmMPK17主要位于细胞核,其C端结构域延伸被认为对此至关重要。 Northern印迹分析表明,ZmMPK17转录参与对脱落酸,过氧化氢,水杨酸,茉莉酸和乙烯等外源信号分子的响应,并由低温和渗透胁迫诱导。过氧化氢和Ca〜(2+)在转录水平上介导PEG诱导的ZmMPK17的下调,Ca〜(2+)也介导低温诱导的ZmMPK17的表达。烟草(Nicotoniatobaccum)中ZmMPK17的过表达通过影响抗氧化防御系统,在渗透胁迫下积累了较少的活性氧。相对于对照植物,转基因烟草通过提高发芽率,提高脯氨酸和可溶性糖水平表现出增强的耐寒性。在寒冷和渗透胁迫条件下,过表达ZmMPK17的品系中NtERD10基因的转录水平高于对照植物。过表达ZmMPK17的植物显示出对病毒病原体的增强抗性,并且发病相关基因PR1a的表达显着增加,表明ZmMPK17可能参与SA介导的病原体防御信号通路。

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