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Physiological Responses of Contrasting Rice Genotypes to Salt Stress at Reproductive Stage

机译:不同基因型水稻在生育期对盐胁迫的生理响应

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Salinity is a major abiotic stress affecting plant growth and productivity. Considerable genetic variation is present in rice in response to salt stress, with higher sensitivity during early seedling and reproductive stage. In this study, physiological changes in leaves and developing panicles of rice genotypes (IR686, Sadri, Rc222, CSR28, IR670 and Pokkali) contrasting in salt tolerance at the reproductive stage were evaluated in greenhouse experiment under salt stress. The results showed that IR670 and the tolerant-check Pokkali maintained lower Na+/K+ratio, less reduction in chlorophyll concentration, lower malondialdehyde (MDA) production, higher concentrations of reduced ascorbate (reduced AsA), higher proline accumulation and lower percentage reduction in pollen viability than the salt-sensitive genotypes under salt stress. The higher concentration of reduced AsA suggests an efficient ROS-scavenging system. Physiological measurements and pollen viability analysis revealed that Sadri (moderately tolerant at the seedling stage) is sensitive to salt stress at the flowering stage. The findings will be useful in breeding salt tolerant varieties at both seedling and reproductive stages by selecting appropriate genotypes and phenotypes.
机译:盐度是影响植物生长和生产力的主要非生物胁迫。水稻对盐胁迫的响应存在相当大的遗传变异,在幼苗早期和生殖阶段具有更高的敏感性。在这项研究中,在盐胁迫下的温室试验中,评估了水稻基因型(IR686,Sadri,Rc222,CSR28,IR670和Pokkali)在生育期的耐盐性与叶片和发育穗的生理变化。结果表明,IR670和宽容度Pokkali保持较低的Na + / K +比率,叶绿素浓度的减少较少,丙二醛(MDA)产生的减少,抗坏血酸的减少(AsA的减少)的浓度较高,脯氨酸的积累较高,而减少的百分比降低花粉活力比盐胁迫下的盐敏感基因型强。较高浓度的还原型AsA表示有效的ROS清除系统。生理测量和花粉生存力分析表明,Sadri(在幼苗期中度耐受)在开花期对盐胁迫敏感。通过选择合适的基因型和表型,该发现对于在幼苗和生殖阶段耐盐品种的育种将是有用的。

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