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亚硒酸盐通过减少砷的吸收,减轻砷酸盐对水稻(Oryza sativa L.)的毒性,同时改善氨基酸含量和巯基代谢。

Selenate mitigates arsenite toxicity in rice (Oryza sativa L.) by reducing arsenic uptake and ameliorates amino acid content and thiol metabolism.

机构信息

Department of Botany, Lucknow University, Lucknow 226 007, India; CSIR, National Botanical Research Institute, Lucknow 226 001, India.

CSIR, National Botanical Research Institute, Lucknow 226 001, India.

出版信息

Ecotoxicol Environ Saf. 2016 Nov;133:350-9. doi: 10.1016/j.ecoenv.2016.06.037. Epub 2016 Aug 4.

Abstract

Arsenic (As) is a toxic element with the potential to cause health effects in humans. Besides rice is a source of both amino acids (AAs) and mineral nutrients, it is undesired source of As for billions of people consuming rice as the staple food. Selenium (Se) is an essential metalloid, which can regulate As toxicity by strengthening antioxidant potential. The present study was designed to investigate As(III) stress mitigating effect of Se(VI) in rice. The level of As, thiolic ligands and AAs was analyzed in rice seedlings after exposure to As(III)/Se(VI) alone and As(III)+Se(VI) treatments. Selenate supplementation (As(III) 25μM+Se(VI) 25μM) decreased total As accumulation in both root and shoot (179 & 144%) as compared to As(III) alone treatment. The As(III)+Se(VI) treatment also induced the levels of non-protein thiols (NPTs), glutathione (GSH) and phytochelatins (PCs) as compared to As(III) alone treatment and also modulated the activity of enzymes of thiol metabolism. The content of amino acids (AAs) was significantly altered with Se(VI) supplementation. Importantly, essential amino acids (EAAs) were enhanced in As(III)+Se(VI) treatment as compared to As(III) alone treatment. In contrast, stress related non-essential amino acids (NEAAs) like GABA, Glu, Gly, Pro and Cys showed enhanced levels in As(III) alone treatment. In conclusion, rice supplemented with Se(VI) tolerated As toxicity with reduced As accumulation and increased the nutrition quality by increasing EAAs.

摘要

砷(As)是一种有毒元素,有可能对人类健康造成影响。除了大米是氨基酸(AAs)和矿物质营养的来源外,它还是数十亿以大米为主食的人的不理想砷来源。硒(Se)是一种必需的类金属元素,它可以通过增强抗氧化潜力来调节砷毒性。本研究旨在研究 Se(VI)对水稻中 As(III)胁迫的缓解作用。在单独暴露于 As(III)/Se(VI)和 As(III)+Se(VI)处理后,分析了水稻幼苗中砷、硫醇配体和氨基酸的水平。与单独的 As(III)处理相比,亚硒酸盐补充(As(III)25μM+Se(VI)25μM)降低了根和茎中的总砷积累(179%和 144%)。与单独的 As(III)处理相比,As(III)+Se(VI)处理还诱导了非蛋白巯基(NPTs)、谷胱甘肽(GSH)和植物螯合肽(PCs)的水平,并且还调节了巯基代谢酶的活性。氨基酸(AAs)的含量也因 Se(VI)的补充而发生显著变化。重要的是,与单独的 As(III)处理相比,As(III)+Se(VI)处理中必需氨基酸(EAAs)增加。相比之下,应激相关的非必需氨基酸(NEAAs)如 GABA、Glu、Gly、Pro 和 Cys 在单独的 As(III)处理中表现出增加的水平。总之,补充 Se(VI)的水稻可以耐受砷毒性,减少砷积累,并通过增加 EAAs 来提高营养质量。

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