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首页> 外文期刊>Brazilian Archives of Biology and Technology >Silicon Mediated Alleviation of Salinity Stress Regulated by Silicon Transporter Genes (Lsi1 and Lsi2) in Indica Rice
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Silicon Mediated Alleviation of Salinity Stress Regulated by Silicon Transporter Genes (Lsi1 and Lsi2) in Indica Rice

机译:硅介导通过籼稻(LSI1和LSI2)调节的盐度应力的缓解

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Silicon accumulation is known to improve tolerance of plants under both biotic and abiotic stress. Salinity stress is an inevitable crisis causing wide spread damage to rice leading to food insecurity. The influence of Si (1mM) on two rice cultivars cv. Ghanteswari (high accumulator) and cv.Badami (low accumulator) which differs in Si uptake potential under saline (10ds/m EC) and non- saline conditions were studied in nutrient culture. The Si transporter genes were isolated and characterized to determine their function in salinity tolerance. Under stress, there was an increase in Si accumulation, Na /K ratio, electrolyte leakage, lipid peroxidation and antioxidant activities. On addition of silicon, the K uptake increased, membrane damage reduced and osmolytes balance improve under salinity. But, the level of resurgence was varied in both cultivars, due to their differential Si-accumulation. Molecular characterizations of Lsi1 protein revealed its involvement in the movement of ion and water and therefore prevent osmotic stress. The Lsi2 is responsible for removal of Na , reducing salt toxicity. Silicon accumulation is responsible for maintenance of cell water status, osmotic balance and Na ion exclusion during high salinity. The variable relative expression of Lsi2 provides a possible explanation for differential genotypic uptake of silicon.
机译:已知硅积聚以改善生物和非生物胁迫下的植物的耐受性。盐度压力是一个不可避免的危机,导致稻米造成广泛蔓延,导致粮食不安全。 Si(1mm)对两种水稻CV的影响。在盐水(10DS / MEC)和营养培养中,研究了在盐水(10ds / m Ec)和盐水条件下不同于Si摄取电位的高蓄能器(高蓄能器)和CV.Badami(低蓄能器)。分离Si转运蛋白基因并表征以确定它们在盐度耐受性中的功能。在应力下,Si累积,Na / K比,电解质泄漏,脂质过氧化和抗氧化活性增加。在添加硅,k摄取增加,膜损伤降低,渗透性平衡在盐度下改善。但是,由于其差异的Si累积,两种品种在两个品种中的复兴水平变化。 LSI1蛋白的分子表征显示其参与离子和水的运动,从而防止渗透胁迫。 LSI2负责去除Na,降低盐毒性。硅堆积负责在高盐度期间维持细胞水状态,渗透平衡和Na离子排除。 LSI2的可变相对表达提供了硅的差分基因型摄取的可能解释。

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