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首页> 外文期刊>Archives of Agronomy and Soil Science >Differential response of rice seedlings to salt stress in relation to antioxidant enzyme activity and membrane stability index.
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Differential response of rice seedlings to salt stress in relation to antioxidant enzyme activity and membrane stability index.

机译:水稻幼苗对盐胁迫的差异响应与抗氧化酶活性和膜稳定性指数的关系。

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摘要

Three rice genotypes, IR 74802, IR 73104 and IR 72593, along with FL 478 and IR 29 as resistant and susceptible controls, respectively, were subjected to 21 days' salinity stress at the seedling stage in modified yoshida solution with two salt levels (60 and 120 mM NaCl). The results indicated that there was a profound increase in proline and ascorbic acid levels, and in the activity of nitrate reductase and antioxidant enzymes, i.e. catalase, peroxidase and ascorbate peroxidase, as well as malondialdhyde and membrane stability index, which were associated with salt tolerance. Salt stress had a significant and drastic effect on all parameters when the salinity level increased to 120 mM NaCl. The increased enzyme activity was directly related to an increased membrane stability index, as in IR 72593, which is identified as the most tolerant among the genotypes tested. It is clearly confirmed that predicting tolerance at the early seedling stage is the best way to assess the salinity tolerance level by utilizing physiological parameters, especially antioxidant enzyme activities which are found to be closely associated with salinity tolerance. Physiological adaptation of the plant to NaCl salt stress resulted in enhanced activity of stress-related enzymes and low sodium uptake in tolerant genotypes.
机译:在改良的吉田溶液中,将两种水稻基因型IR 74802,IR 73104和IR 72593以及FL 478和IR 29分别作为抗病和易感对照,在苗期接受两种盐水平的改良吉田溶液中的盐分胁迫21天(60)。和120 mM NaCl)。结果表明,脯氨酸和抗坏血酸水平显着增加,硝酸还原酶和抗氧化酶(过氧化氢酶,过氧化物酶和抗坏血酸过氧化物酶)以及丙二醛和膜稳定性指数的活性均与耐盐性相关。当盐度水平提高到120 mM NaCl时,盐胁迫对所有参数都产生了显着而剧烈的影响。酶活性的增加与膜稳定性指数的增加直接相关,如IR 72593中所示,这被确定为测试的基因型中耐受性最高的。清楚地证实,在幼苗早期预测耐受性是通过利用生理参数,特别是发现与盐分耐受性密切相关的抗氧化酶活性来评估盐分耐受性水平的最佳方法。植物对NaCl盐胁迫的生理适应性增强了胁迫相关酶的活性,并且耐性基因型的钠吸收率低。

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