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Differential response of antioxidative systems of maize (Zea mays L.) roots cell walls to osmotic and heavy metal stress

机译:玉米(Zea mays L.)抗氧化系统根细胞壁对渗透压和重金属胁迫的差异响应

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An analysis of peroxidase and ascorbate oxidase activity, phenolic content and antioxidant capacity of isolated maize root cell walls was performed in controls and plants stressed with polyethylene glycol (PEG) or heavy metals, zinc or copper. Peroxidase activity (oxidative and peroxidative) was more pronounced in the ionic than in the covalent cell wall fraction. PEG induced an increase and Zn~(2+) a decrease of both ionically bound peroxidase activities. In the covalent fraction, Cu~(2+) decreased oxidative and increased peroxidative activity of peroxidase. Isoelectric focusing of ionically bound proteins and activity staining for peroxidase demonstrated increased intensities and appearance of new acidic isoforms, especially in Zn~(2+) and PEG treatments. Most pronounced basic isoforms (pI ~ 7.5) in controls, decreased in intensity or completely disappeared in stressed plants. Ascorbate oxidase activity was significantly increased by PEG and decreased by Zn~(2+) treatments, and highly correlated with peroxidase activity. Antioxidant capacity and total phenolics content increased in heavy metal-treated and decreased in PEG-treated plants. Analysis of individual phenolic components revealed p-coumaric and ferulic acids, as the most abundant, as well as ferulic acid dimers, trimers and tetramers in the cell walls; their quantity increased under stress conditions. Results presented demonstrate the existence of diverse mechanisms of plant response to different stresses.
机译:在受聚乙二醇(PEG)或重金属,锌或铜胁迫的对照和植物中,对分离的玉米根细胞壁的过氧化物酶和抗坏血酸氧化酶活性,酚含量和抗氧化能力进行了分析。离子中的过氧化物酶活性(氧化性和过氧化性)比共价细胞壁级分更明显。 PEG诱导离子结合的过氧化物酶活性增加,而Zn〜(2+)减少。在共价部分中,Cu〜(2+)降低了过氧化物酶的氧化活性,并增加了过氧化物酶的过氧化活性。离子结合蛋白的等电聚焦和过氧化物酶的活性染色表明,新酸性同工型的强度和外观增加,尤其是在Zn〜(2+)和PEG处理中。对照中最明显的基本同工型(pI〜7.5),在受压植物中强度降低或完全消失。 PEG显着提高了抗坏血酸氧化酶的活性,而Zn〜(2+)处理降低了抗坏血酸的氧化酶的活性,与过氧化物酶的活性高度相关。在重金属处理的植物中,抗氧化能力和总酚含量增加,而在PEG处理的植物中则降低。对单个酚类成分的分析显示,对香豆酸和阿魏酸含量最高,并且在细胞壁中还含有阿魏酸二聚体,三聚体和四聚体。在压力条件下它们的数量增加。提出的结果证明了植物对不同胁迫的反应的多种机制的存在。

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