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银纳米颗粒调节氟胁迫下绿豆中基因表达、糖氧化解毒系统和氧化应激标志物

Silver nanoparticle modulates gene expressions, glyoxalase system and oxidative stress markers in fluoride stressed Cajanus cajan L.

机构信息

School of Studies in Biotechnology, Pt. Ravishankar Shukla University, Raipur 492 010, India.

School of Studies in Chemistry, Pt. Ravishankar Shukla University, Raipur 492 010, India.

出版信息

J Hazard Mater. 2018 Jul 5;353:44-52. doi: 10.1016/j.jhazmat.2018.03.061. Epub 2018 Mar 30.

Abstract

Application of engineered nanomaterials has increased these days due to their beneficial impacts on several sectors of the economy, including agriculture. Silver nanoparticles (AgNP) are commonly used to improve rate of seed germination, and growth and development of plants. The present study was aimed to monitor the role of engineered AgNP (non-dialysed) in the amelioration of fluoride (F)-induced oxidative injuries in Cajanus cajan L. Experimental results revealed that F-exposure inhibited growth and membrane stability index, while were enhanced with the augmentation of AgNP. The results also demonstrated that F treatment enhanced the accumulations of reactive oxygen species, malondialdehyde and oxidized glutathione, gene expression of NADPH oxidase, and activity of lipoxygenase, but were decreased by the addition of AgNP. The results indicated that exogenous application of AgNP provided tolerance against F-toxicity via enhancing the levels of proline, total and reduced glutathione, glyoxalase I and II activities, and expression of pyrroline-5-carboxylate synthetase gene. Conducted study uniquely suggested potential role of AgNP in the remediation of F-toxicity, at least in the Cajanus cajan L. radicles. Further research would be intended to unravel the molecular mechanism(s) involved precisely in the AgNP mediated alleviation of F-toxicity.

摘要

由于工程纳米材料对包括农业在内的许多经济领域都有有益的影响,因此其应用日益广泛。银纳米颗粒(AgNP)常用于提高种子的发芽率以及植物的生长和发育。本研究旨在监测工程 AgNP(未透析)在减轻 Cajanus cajan L. 中氟化物(F)诱导的氧化损伤中的作用。实验结果表明,F 暴露抑制了生长和膜稳定性指数,而 AgNP 的增加则增强了它们。结果还表明,F 处理会增加活性氧、丙二醛和氧化型谷胱甘肽、NADPH 氧化酶基因表达和脂氧合酶活性,但添加 AgNP 后则会降低这些物质的含量。结果表明,外源添加 AgNP 通过提高脯氨酸、总谷胱甘肽和还原型谷胱甘肽、甘油醛酶 I 和 II 活性以及吡咯啉-5-羧酸合成酶基因的表达水平,为 F 毒性提供了耐受性。该研究独特地表明了 AgNP 在修复 F 毒性中的潜在作用,至少在 Cajanus cajan L. 根中是如此。进一步的研究旨在揭示 AgNP 介导减轻 F 毒性的确切分子机制。

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