首页> 美国卫生研究院文献>Frontiers in Plant Science >Identification of B6T173 (ZmPrx35) as the prevailing peroxidase in highly insect-resistant maize (Zea mays p84C3) kernels by activity-directed purification
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Identification of B6T173 (ZmPrx35) as the prevailing peroxidase in highly insect-resistant maize (Zea mays p84C3) kernels by activity-directed purification

机译:通过活性导向纯化鉴定B6T173(ZmPrx35)为高度抗虫玉米(Zea maysp84C3)粒中主要的过氧化物酶

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摘要

Plant peroxidases (PODs) are involved in diverse physiological processes, including defense against pathogens and insects. Contrary to their biological importance, only very few plant PODs have been proven on protein level, because their low abundance makes them difficult to detect in standard proteomics work-flows. A statistically significant positive correlation between POD activity and post-harvest insect resistance has been found for maize (Zea mays, p84C3) kernels. In combining activity-directed protein purification, genomic and proteomic tools we found that protein B6T173 (ZmPrx35) is responsible for the majority of the POD activity of the kernel. We successfully produced recombinant ZmPrx35 protein in Escherichia coli and demonstrate both, in vitro activity and the presence of a haem (heme) cofactor of the enzyme. Our findings support the screening for insect resistant maize variants and the construction of genetically optimized maize plants.
机译:植物过氧化物酶(PODs)参与多种生理过程,包括对病原体和昆虫的防御。与它们的生物学重要性相反,只有极少数的植物POD在蛋白质水平上得到了证明,因为它们的低丰度使其很难在标准蛋白质组学工作流程中检测到。在玉米(Zea mays,p84C3)粒中,POD活性与收获后昆虫抗性之间的统计学显着正相关。通过结合活性导向的蛋白质纯化,基因组学和蛋白质组学工具,我们发现蛋白质B6T173(ZmPrx35)负责了内核的大部分POD活性。我们在大肠杆菌中成功生产了重组ZmPrx35蛋白,并证明了该酶的体外活性和血红素(血红素)辅因子的存在。我们的发现支持对抗虫玉米变种的筛选和基因优化玉米植物的构建。

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