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首页> 外文期刊>Acta botanica sinica >Role and Relationship of Nitric Oxide and Hydrogen Peroxide in Light/Dark-regulated Stomatal Movement in Vicia faba
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Role and Relationship of Nitric Oxide and Hydrogen Peroxide in Light/Dark-regulated Stomatal Movement in Vicia faba

机译:一氧化氮和过氧化氢在蚕豆光/暗调节气孔运动中的作用和关系

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Role and relationship of NO and H_2O_2 in light/dark-regulated stomatal movement in Vicia faba L. were investigated by epidermal strip bioassay and laser-scanning confocal microscopy. Results showed that the effects of exogenous sodium nitroprusside (SNP, NO-releasing compound) and H_2O_2 on stomatal closure were more significant in light than those in the dark. Dark-induced closure of stomata was largely prevented not only by 2,4-carboxyphenyl-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide CcPTIO), a specific NO scavenger and N~G-nitro-L-arg-methyl eater (L-NAME), an inhibitor of NO synthase (NOS) in mammalian cells that also inhibits plant NOS, but also by addition of ascorbic acid (Vc) and exogenous catalase (CAT), which are an important reducing substrate for H_2O_2 removal and an H_2O_2 scavenger, respectively. Experiments based on fluorescent probe DAF-2 DA and H_2DCF-DA showed that the level of endogenous NO and H_2O_2 in guard cells was greater in the dark than that in light These results prove that light/dark regulates stomatal movement via influencing NO and H_2O_2 production. In addition, H_2O_2-induced NO production and stomatal closure in light were abolished partly by cPTIO and L-NAME. Interestingly, SNP-induced H_2O_2 accumulation and stomatal closure were reversed by Vc and CAT in light. These show that NO and H_2O_2 cross talk in light/dark-regulated stomatal movement. Furthermore, L-NAME could reverse stomatal closure and NO generation induced by darkness and H_2O_2 in light, we presume that the NO generation in guard cells of Vicia faba is likely related to NOS-like enzyme.
机译:通过表皮剥离生物测定和激光扫描共聚焦显微镜研究了蚕豆中光和暗调节气孔运动中NO和H_2O_2的作用和关系。结果表明,外源硝普钠(SNP,NO释放化合物)和H_2O_2对光合气孔的影响比在黑暗中显着。不仅可以通过2,4-羧苯基-4,4,5,5-四甲基咪唑啉-1-氧基1-3氧化物CcPTIO,一种特定的NO清除剂和N〜G-硝基-L来防止黑暗诱导的气孔关闭-arg-methyl eater(L-NAME),是哺乳动物细胞中NO合酶(NOS)的抑制剂,也可以抑制植物NOS,而且还可以添加抗坏血酸(Vc)和外源过氧化氢酶(CAT),这是一种重要的还原剂分别去除H_2O_2的底物和H_2O_2的清除剂。基于荧光探针DAF-2 DA和H_2DCF-DA的实验表明,在黑暗中,保卫细胞内源性NO和H_2O_2的水平高于在光照条件下的结果。这些结果证明,明/暗通过影响NO和H_2O_2的产生来调节气孔运动。 。另外,cPTIO和L-NAME部分消除了H_2O_2诱导的NO生成和光照下的气孔关闭。有趣的是,Sc诱导的H_2O_2积累和气孔关闭被Vc和CAT逆转。这些表明NO和H_2O_2在光/暗调节的气孔运动中相互干扰。此外,L-NAME可以逆转黑暗和H_2O_2在光下诱导的气孔关闭和NO生成,我们推测蚕豆保卫细胞中的NO生成可能与NOS样酶有关。

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