首页> 美国卫生研究院文献>Journal of Experimental Botany >Membrane-bound guaiacol peroxidases from maize (Zea mays L.) roots are regulated by methyl jasmonate salicylic acid and pathogen elicitors
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Membrane-bound guaiacol peroxidases from maize (Zea mays L.) roots are regulated by methyl jasmonate salicylic acid and pathogen elicitors

机译:玉米(Zea mays L.)根系的膜结合愈创木酚过氧化物酶受茉莉酸甲酯水杨酸和病原体激发子的调节

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摘要

Plant peroxidases are involved in numerous cellular processes in plant development and stress responses. Four plasma membrane-bound peroxidases have been identified and characterized in maize (Zea mays L.) roots. In the present study, maize seedlings were treated with different stresses and signal compounds, and a functional analysis of these membrane-bound class III peroxidases (pmPOX1, pmPOX2a, pmPOX2b, and pmPOX3) was carried out. Total guaiacol peroxidase activities from soluble and microsomal fractions of maize roots were compared and showed weak changes. By contrast, total plasma membrane and washed plasma membrane peroxidase activities, representing peripheral and integral membrane proteins, revealed strong changes after all of the stresses applied. A proteomic approach using 2D-PAGE analysis showed that pmPOX3 was the most abundant class III peroxidase at plasma membranes of control plants, followed by pmPOX2a >pmPOX2b >pmPOX1. The molecular mass (63 kDa) and the isoelectric point (9.5) of the pmPOX2a monomer were identified for the first time. The protein levels of all four enzymes changed in response to multiple stresses. While pmPOX2b was the only membrane peroxidase down-regulated by wounding, all four enzymes were differentially but strongly stimulated by methyl jasmonate, salicylic acid, and elicitors (Fusarium graminearum and Fusarium culmorum extracts, and chitosan) indicating their function in pathogen defence. Oxidative stress applied as H2O2 treatment up-regulated pmPOX2b >pmPOX2a, while pmPOX3 was down-regulated. Treatment with the phosphatase inhibitor chantharidin resulted in distinct responses.
机译:植物过氧化物酶参与植物发育和胁迫响应的许多细胞过程。在玉米(Zea mays L.)的根中已鉴定出四种质膜结合的过氧化物酶并对其进行了表征。在本研究中,玉米幼苗用不同的胁迫和信号化合物处理,并对这些膜结合的III类过氧化物酶(pmPOX1,pmPOX2a,pmPOX2b和pmPOX3)进行功能分析。比较了玉米根中可溶性和微粒体部分的总愈创木酚过氧化物酶活性,并显示出微弱的变化。相比之下,代表所有外围和完整膜蛋白的总质膜和洗涤后的质膜过氧化物酶活性在施加所有应力后显示出强烈的变化。使用2D-PAGE分析的蛋白质组学方法显示,pmPOX3是对照植物质膜上最丰富的III类过氧化物酶,其次是pmPOX2a> pmPOX2b> pmPOX1。首次确定了pmPOX2a单体的分子量(63 kDa)和等电点(9.5)。所有四种酶的蛋白质水平响应多种压力而改变。虽然pmPOX2b是唯一一种通过创伤而下调的膜过氧化物酶,但茉莉酸甲酯,水杨酸和引发剂(禾谷镰刀菌和枯萎镰孢菌提取物和壳聚糖)均会差异刺激但强烈刺激所有四种酶,表明它们在病原体防御中发挥了作用。 H2O2处理施加的氧化应激上调pmPOX2b> pmPOX2a,而pmPOX3下调。用磷酸酶抑制剂chantharidin处理可产生明显反应。

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