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首页> 外文期刊>Functional Plant Biology >Copper amine oxidase-catalysed hydrogen peroxide involves production of nitric oxide in darkness-induced stomatal closure in broad bean
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Copper amine oxidase-catalysed hydrogen peroxide involves production of nitric oxide in darkness-induced stomatal closure in broad bean

机译:铜胺氧化酶催化的过氧化氢在黑暗诱导的蚕豆气孔关闭中涉及一氧化氮的产生

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摘要

Hydrogen peroxide is an important intermediate in darkness-induced stomatal closure. In the present work, we provide evidence that copper amine oxidase (CuAO) was involved in H2O2 production in darkness-induced stomatal closure in Vicia faba L. Darkness activated CuAO in intercellular washing fluid from leaves. Aminoguanidine (AG) and 2-bromoethylamine (BEA), which were both irreversible inhibitors of CuAO, significantly suppressed darkness-induced stomatal closure and H2O2 generation. The effects of AG and BEA were reversed only by H2O2 but not by other products of CuAO. These results indicate that CuAO participates in darkness-induced stomatal closure through its reaction product, H2O2. Furthermore, darkness-induced nitric oxide (NO) production and cytosolic alkalinisation were obviously inhibited by AG and BEA, and only H2O2, among the products of CuAO, could reverse the effects, implying that the CuAO-catalysed product H2O2 is required for NO production and cytosolic alkalinisation to a large extent in darkness-induced stomatal closure. In addition, butyric acid blocked but methylamine enhanced the ability of H2O2 to reverse the effect of BEA on NO production, suggesting that cytosolic alkalinisation is involved in CuAO-mediated NO generation in darkness-induced stomatal closure.
机译:过氧化氢是黑暗诱导的气孔关闭的重要中间体。在目前的工作中,我们提供的证据表明,铜胺氧化酶(CuAO)参与了蚕豆中黑暗诱导的气孔关闭过程中H2O2的产生。黑暗激活了叶片细胞间洗涤液中的CuAO。都是不可逆的CuAO抑制剂氨基胍(AG)和2-溴乙胺(BEA)显着抑制了黑暗引起的气孔关闭和H2O2的产生。 AG和BEA的作用仅被H2O2逆转,而CuAO的其他产品则不逆转。这些结果表明,CuAO通过其反应产物H2O2参与了黑暗诱导的气孔关闭。此外,AG和BEA明显抑制了黑暗诱导的一氧化氮(NO)的产生和细胞质的碱化,只有CuAO产物中的H2O2可以逆转这种影响,这意味着需要用CuAO催化的产物H2O2才能产生NO。在黑暗诱导的气孔关闭过程中,胞浆的碱化和胞质碱化程度很大。另外,丁酸阻断但甲胺增强了H2O2逆转BEA对NO产生的影响的能力,这表明在黑暗诱导的气孔关闭过程中,胞质碱化与CuAO介导的NO产生有关。

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