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Enhanced oxidative stress tolerance in rice plants is associated with membrane stability, pigment composition and scavenging of reactive oxygen species

机译:水稻植物中增强的氧化应激耐受性与膜稳定性,颜料组合物和反应性氧的清除相关

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摘要

Oxidative stress was induced by in vivo treatment with hydrogen peroxide in rice genotypes showing contrasting behavior to flooding and salt stress. Four rice genotypes FR13'A (Tolerant to flooding stress); CO 43 (Susceptible to flooding stress); FL 478 (Tolerant to salinity stress) and IR29 (Susceptible to salinity stress) were used to study important physiological traits like chlorophyll contents, Cell Membrane Stability, Nitrate reductase activity and antioxidant capacity under oxidative stress. H202 treatments caused degradation in chlorophyll contents, decreased membrane stability and reduced the activities of Nitrate reductase in all the genotypes. A gradual increase in the activities of catalase and peroxidase were recorded under H202 treatments. Significant upregulation of antioxidant enzyme systems and slow degradation of chlorophyll contents, with less reduction in cell membrane stability and Nitrate reductase activity in the tolerant genotypes (FR 13A and FL 478) play important roles instress protection.
机译:通过在水稻基因型中的过氧化氢处理氧化应激诱导,显示对溢出和盐胁迫的对比行为。四种水稻基因型FR13'a(耐泛压力); CO 43(易受洪水压力的影响); FL 478(耐盐性应力)和IR29(易感性盐度应力)用于研究叶绿素含量,细胞膜稳定性,硝酸盐还原酶活性和氧化应激的抗氧化能力等重要的生理性状。 H202治疗使叶绿素含量降低,膜稳定性降低,降低了所有基因型中硝酸还原酶的活性。在H 2 O 2处理下记录过氧化氢酶和过氧化物酶活性的逐渐增加。抗氧化酶系统的显着上调和叶绿素含量的缓慢降解,细胞膜稳定性降低和耐受性基因型中的硝酸硝酸还原酶活性减少(FR 13A和FL 478)起着重要的作用仪器保护。

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