首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Silicon mediates arsenic tolerance in rice (Oryza sativa L.) through lowering of arsenic uptake and improved antioxidant defence system
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Silicon mediates arsenic tolerance in rice (Oryza sativa L.) through lowering of arsenic uptake and improved antioxidant defence system

机译:硅通过降低砷吸收量和改善抗氧化防御系统来介导水稻(Oryza sativa L.)的砷耐受性

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摘要

Arsenic (As) contamination of paddy rice in South and South-East Asia has raised much concern as rice is the subsidence diet for millions. Two contrasting rice (Oryza sativa L.) cultivars i.e. Triguna (As tolerant) and IET-4786 (As sensitive) were grown hydroponically to study the effect of silicon (Si) supplementation on As accumulation, growth, oxidative stress and antioxidative defence system in shoots during arsenite [As(III)] stress. Rice seedlings were exposed to three As(IIl) levels (0, 10 and 25 μM) and three silicic acid levels (0,0.5 and 1 mM Si) in solution culture experiments. Addition of 1 mM Si during As(III) exposure significantly lowers shoot As accumulation in both the cultivar, but more prominently in Triguna (P< 0.01) than IET-4786 (P<0.05). However, addition of Si during As(III) stress had no significant effect on shoot length and dry weight (P<0.01) of both the cultivars, compared to their As(IIl) treated plants. In contrast to IET-4786 (P < 0.05), Triguna tolerated As induced oxidative stress through elevated level of cysteine, enhanced antioxidant enzymes activities and their isozymes. Upon Si supplementation lower conglomeration of oxidative stress parameters viz., superoxide and peroxide radicals, lipid peroxidation and electrolyte leakage coincides with increased antioxidants activities and enhanced level of thiols, more effectively in shoots of Triguna than IET-4786 during As(III) stress (P<0.05). In conclusion, 1 mM Si addition, significantly ameliorates As induced oxidative stress in Triguna cultivar by lowering the As accumulation and improving antioxidant and thiolic system compared to IET-4786, implying genotypic differences with Triguna being less susceptible to stress dependent membrane lipid peroxidation.
机译:由于稻米是数以百万计的沉陷饮食,因此在南亚和东南亚,稻米中的砷(As)污染引起了人们的极大关注。以水培方式种植了两个相对的水稻(Oryza sativa L.)品种Triguna(耐性)和IET-4786(As敏感),研究了硅(Si)对砷积累,生长,氧化胁迫和抗氧化防御系统的影响。砷[As(III)]胁迫时会发芽。在溶液培养实验中,将水稻幼苗暴露于三个As(IIl)水平(0、10和25μM)和三个硅酸水平(0,0.5和1 mM Si)。在As(III)暴露期间添加1 mM Si会显着降低两个品种的芽As积累,但在Triguna中显着高于IET-4786(P <0.01)(P <0.05)。然而,与用As(IIl)处理的植物相比,在As(III)胁迫期间添加Si对这两个品种的苗长和干重均无显着影响(P <0.01)。与IET-4786(P <0.05)相反,Triguna耐受As通过升高半胱氨酸水平诱导氧化应激,增强抗氧化酶活性及其同工酶。补充硅后,氧化应激参数的低聚结,即超氧化物和过氧化物自由基,脂质过氧化和电解质泄漏与抗氧化剂活性的提高和硫醇水平的提高相吻合,在Triguna的芽中比IET-4786在As(III)胁迫下更有效( P <0.05)。总之,与IET-4786相比,添加1 mM Si可以通过降低As积累并改善抗氧化剂和巯基体系来显着改善Triguna品种中As诱导的氧化应激,这意味着Triguna的基因型差异较不易受压力依赖性膜脂过氧化的影响。

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