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首页> 外文期刊>American Journal of Plant Sciences >Exogenous Application of Salicylic Acid and Nitric Oxide on the Ionic Contents and Enzymatic Activities in NaCl-Stressed Soybean Plants
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Exogenous Application of Salicylic Acid and Nitric Oxide on the Ionic Contents and Enzymatic Activities in NaCl-Stressed Soybean Plants

机译:水杨酸和一氧化氮的外源施用对NaCl胁迫大豆植株中离子含量和酶活性的影响

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摘要

The possible protective role of exogenous SA and NO donor (sodium nitroprusside) against salt stress was examined NaCl-induced oxidative stress in Glycine max L. The results indicated that NaCl-induced ionic toxicity led to significant increase of Na+ uptake in root and shoot of soybean, while K+ and Ca2+ uptake was decreased markedly. Application of SA, SNP and the combination of SA with SNP inhibited Na+ uptake, but improved K+ and Ca2+ uptake. Under NaCl salinity, germination percentage (GP) was decreased significantly as compared with control plants. Moreover, the activity of lipoxygenase (LOX) was increased by NaCl, while the application of SA, NO and SA + SNP could decrease LOX activity in this condition. As well, activities of the polyphenol oxidase (PPO) and phenylalanine ammonia lyase (PAL) were significantly decreased by 100 mM NaCl, while the application of exogenous SA and NO increased the activities of PPO and PAL. In addition, it was observed that the SA and NO have effective functions in decreasing the damages induced by NaCl salinity. The seeds of G. max cv. Union × Elf (called L17) were obtained from the Institute of Sapling and Seed in Tehran and experiments have been done in Science and Research Branch, Islamic Azad University. After treatment with SA, SNP and NaCl, the plants were harvested for the estimation of ionic contents and assay of enzyme activities. The results showed that SA and NO act synergistically to reduce the damaging effects of salt tress via enhancing the activity of antioxidative systems.
机译:研究了NaCl诱导的大豆L氧化胁迫对外源SA和NO供体(硝普钠)对盐胁迫的可能保护作用。结果表明,NaCl诱导的离子毒性导致根和茎的Na +吸收显着增加。大豆,钾离子和钙离子的吸收显着下降。施用SA,SNP以及将SA与SNP结合使用可抑制Na +吸收,但可改善K +和Ca2 +吸收。在NaCl盐度下,与对照植物相比,发芽率(GP)显着降低。此外,NaCl可以增加脂氧合酶(LOX)的活性,而在此条件下施用SA,NO和SA + SNP可以降低LOX活性。同样,100 mM NaCl显着降低了多酚氧化酶(PPO)和苯丙氨酸氨裂解酶(PAL)的活性,而外源SA和NO的使用增加了PPO和PAL的活性。另外,已观察到SA和NO在减少由NaCl盐度引起的损害中具有有效的功能。 G. max cv。的种子Union×Elf(称为L17)是从德黑兰的树苗和种子研究所获得的,并已在伊斯兰阿扎德大学的科学与研究部门进行了实验。用SA,SNP和NaCl处理后,收获植物以估算离子含量并测定酶活性。结果表明,SA和NO协同作用,通过增强抗氧化系统的活性来减少盐ress的破坏作用。

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