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首页> 外文期刊>Scientia horticulturae >Exogenous nitric oxide on antioxidative system and ATPase activities from tomato seedlings under copper stress
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Exogenous nitric oxide on antioxidative system and ATPase activities from tomato seedlings under copper stress

机译:铜胁迫下外源一氧化氮对番茄幼苗抗氧化系统和ATPase活性的影响

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摘要

Nitric oxide (NO) serves as a bioactive molecule involved in antioxidant and anti-stress agent in tolerance responses to abiotic stress. Here, we investigated the effects of exogenous sodium nitroprusside (SNP), a NO donor, on both the ROS metabolism and functions of plasma membrane and tonoplast in tomato plants treated with 50oM CuCl. The copper stress markedly decreased shoot height, fresh weight, induced significant accumulation of HO, and led to serious lipid peroxidation in tomato plants. The application of 100oM SNP significantly alleviated the growth inhibition, promoted ROS-scavenging enzymes, reduced HO content in tomato plants, and alleviated the inhibition of H-ATPase and H-PPase in plasma membrane or tonoplast induced by CuCl. While application of sodium ferrocyanide (an analog of SNP) and sodium nitrate or nitrite (the decomposition product of NO or its donor SNP) which did not release NO, did not show the effects of SNP; furthermore, the effects of SNP were reversed by addition of hemoglobin (a NO scavenger). All together, these results suggested that exogenous NO could be advantageous against copper (Cu) toxicity, and could confer tolerance to heavy metal stress in tomato plants.
机译:一氧化氮(NO)作为抗氧化剂和抗应激剂的生物活性分子,对非生物胁迫具有耐受性。在这里,我们研究了NO供体硝普钠(SNP)对50oM CuCl处理的番茄植株的ROS代谢以及质膜和液泡膜功能的影响。铜胁迫显着降低了芽高,鲜重,诱导了HO的大量积累,并导致番茄植株中严重的脂质过氧化。 100oM SNP的施用显着减轻了番茄植株的生长抑制,促进了ROS清除酶的活性,降低了HO含量,减轻了CuCl诱导的质膜或液泡膜中H-ATPase和H-PPase的抑制作用。亚铁氰化钠(SNP的类似物)和硝酸钠或亚硝酸盐(NO或其供体SNP的分解产物)的应用虽然没有释放NO,但并未显示出SNP的作用。此外,通过添加血红蛋白(NO清除剂)可以逆转SNP的作用。总之,这些结果表明,外源NO可能有利于对抗铜(Cu)毒性,并且可以赋予番茄植物对重金属胁迫的耐受性。

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