首页> 美国卫生研究院文献>Plant Physiology >The Role of Hydrogen Peroxide-Producing and Hydrogen Peroxide-Consuming Peroxidases in the Leaf Apoplast of Cowpea in Manganese Tolerance
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The Role of Hydrogen Peroxide-Producing and Hydrogen Peroxide-Consuming Peroxidases in the Leaf Apoplast of Cowpea in Manganese Tolerance

机译:of豆叶片质外体中过氧化氢和过氧化氢的过氧化物酶在耐锰中的作用

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摘要

The apoplast is considered the leaf compartment decisive for manganese (Mn) toxicity and tolerance in cowpea (Vigna unguiculata). Particularly apoplastic peroxidases (PODs) were proposed to be key enzymes in Mn toxicity-induced processes. The presented work focuses on the characterization of the role of hydrogen peroxide (H2O2)-producing (NADH peroxidase) and H2O2-consuming peroxidase (guaiacol POD) in the apoplastic washing fluid (AWF) of leaves for early stages of Mn toxicity and genotypic differences in Mn tolerance of cowpea. Leaf AWF of the Mn-sensitive cultivar (cv) TVu 91 but not of the Mn-tolerant cv 1987 showed an increase of guaiacol-POD and NADH-peroxidase activities at elevated AWF Mn concentrations. two-dimensional resolutions of AWF proteins revealed that cv TVu 91 expressed more and additional proteins at high Mn treatment, whereas Mn-tolerant cv TVu 1987 remained nearly unaffected. In both cultivars, NADH-peroxidase activity and accompanied H2O2 formation rate in vitro were significantly affected by Mn2+, p-coumaric acid, and metabolites occurring in the AWF. The total phenol concentration in the AWF was indicative of advanced stages of Mn toxicity but was rather unrelated to early stages of Mn toxicity and genotypic differences in Mn tolerance. The NADH oxidation by AWF PODs was significantly delayed or enhanced in the presence of the protein-free AWF from cv TVu 1987 or cv TVu 91, respectively. High-performance liquid chromatography analysis of AWF indicates the presence of phenols in cv TVu 1987 not observed in cv TVu 91. We conclude from our studies that the H2O2-producing NADH peroxidase and its modulation by stimulating or inhibiting phenolic compounds in the leaf apoplast play a major role for Mn toxicity and Mn tolerance in cowpea.
机译:质外体被认为对cow豆(Vigna unguiculata)中锰(Mn)的毒性和耐受性具有决定性的作用。特别提出了质外性过氧化物酶(PODs)是锰毒性诱导过程中的关键酶。本文的工作重点在于表征叶片过质子清洗液(AWF)中产生过氧化氢(H2O2)(NADH过氧化物酶)和消耗过H2O2的过氧化物酶(愈创木酚POD)对于Mn毒性和基因型差异的早期阶段的作用。 cow豆的锰耐受性。 Mn敏感品种TVu 91的叶片AWF而不是Mn耐性1987的叶片AWF,在AWF Mn浓度升高时,愈创木酚-POD和NADH-过氧化物酶活性增加。 AWF蛋白的二维分辨率揭示,在高锰处理下,cv TVu 91表达更多和更多的蛋白质,而耐锰的cv TVu 1987几乎不受影响。在这两个品种中,AWF中Mn 2 + ,对香豆酸和代谢产物均显着影响NADH的过氧化物酶活性和H2O2的体外形成速率。 AWF中的总酚浓度指示锰毒性的晚期,但与锰毒性的早期和锰耐受性的基因型差异无关。在分别来自cv TVu 1987或cv TVu 91的无蛋白AWF的存在下,AWF POD的NADH氧化显着延迟或增强。 AWF的高效液相色谱分析表明,cv TVu 1987中未观察到cv TVu 1987中存在酚。我们从研究中得出结论,产生H2O2的NADH过氧化物酶及其通过刺激或抑制叶质外体中酚类化合物的调节cow豆中Mn毒性和Mn耐受性的重要作用。

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