首页> 外文期刊>Journal of Plant Growth Regulation >Oxalic Acid Mitigates Cadmium Toxicity in Cicer arietinum L. Germinating Seeds by Maintaining the Cellular Redox Homeostasis
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Oxalic Acid Mitigates Cadmium Toxicity in Cicer arietinum L. Germinating Seeds by Maintaining the Cellular Redox Homeostasis

机译:草酸通过维持细胞氧化还原稳态来减轻 Cicer arietinum L. 萌发种子中的镉毒性

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摘要

Abstract The present study aimed to investigate the potential protective role of oxalic acid (OA) against Cadmium (Cd) toxicity. Chickpea (Cicer arietinum L.) seeds were exposed to 200 µM Cd stress for 6 days or to co-treatment with 200 µM Cd + 100 µM OA for 3 days following to 3-day Cd stress. The application of OA ameliorated the growth of both roots and shoots of Cd-treated seedlings. This effect was mediated by the restriction of Cd accumulation in plant tissues. Besides, malondialdehyde (MDA) and carbonyl group contents decreased in OA-treated seedlings, suggesting that OA reversed the Cd-induced oxidative stress and its detrimental effect on cell membrane integrity. These results were further confirmed by the reduction by 2- and 1.7-fold of hydrogen peroxide (H2O2) accrual in roots and shoots, respectively, when compared to Cd-challenged seedlings. Moreover, OA corrected the Cd-imposed imbalance of the glutathione redox state, mainly via the restoration of the glutathione pool. This achievement seems to be the result of the modulation of glutathione peroxidase (GPX) and glutathione reductase (GR) activities. Likewise, OA counteracted the adverse effect of Cd on nicotinamides redox state reflected by the restoration of the balance between oxidized NAD(P) and reduced NAD(P)H forms. Taken together, our results suggest that the exogenous supply of OA to germinating seeds can be a promising alternative to improve plant tolerance to heavy metal stress.
机译:摘要 本研究旨在探讨草酸(OA)对镉(Cd)毒性的潜在保护作用。鹰嘴豆 (Cicer arietinum L.) 种子在 200 μM Cd 胁迫下暴露 6 天,或在 3 天 Cd 胁迫后与 200 μM Cd + 100 μM OA 共处理 3 天。OA的应用改善了Cd处理幼苗根和芽的生长。这种效应是由限制Cd在植物组织中积累所介导的。此外,OA处理幼苗丙二醛(MDA)和羰基含量降低,表明OA逆转了Cd诱导的氧化应激及其对细胞膜完整性的不利影响。与Cd挑战幼苗相比,根和芽中过氧化氢(H2O2)的积累分别减少了2倍和1.7倍,进一步证实了这些结果。此外,OA主要通过恢复谷胱甘肽池来纠正Cd施加的谷胱甘肽氧化还原状态的失衡。这一成就似乎是调节谷胱甘肽过氧化物酶(GPX)和谷胱甘肽还原酶(GR)活性的结果。同样,OA抵消了Cd对烟酰胺氧化还原状态的不利影响,这反映在氧化[NAD(P)]和还原[NAD(P)H]形式之间的平衡的恢复上。综上所述,我们的研究结果表明,OA向萌发种子的外源供应可以成为提高植物对重金属胁迫耐受性的一种有前途的替代方案。

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