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Adaptive Behaviour of Roots under Salt Stress Correlates with Morpho- Physiological Changes and Salinity Tolerance in Rice

机译:盐胁迫下根系的适应行为与水稻的形态生理变化和耐盐性相关

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Salinity screening of five commercially available rice (Oryza sativa L.) genotypes i.e., KS-282, Super Basmati, KSK 133, Shaheen Basmati and DilRosh was performed at 100 mM sodium chloride (NaCl) concentration to investigate the effect of salt stress on root architecture and to understand the role of roots in salinity adaptation. Morpho-physiological attributes and water conservation level were monitored in all genotypes under control and stress conditions. Among the tested genotypes, KS-282 was found to be fairly tolerant while Super Basmati was found to be highly sensitive. Changes in the root architectural dynamics were analyzed using WinRhizo pro software program. Na + and K + content in the roots and shoots were correlated with morpho physiological growth parameters and variations in root geometry. A significant decrease in the root length, lateral root density combined with reduced surface area was evident in the tolerant genotype within the first three days of salt treatment. Growth was sustained gradually after this initial delay while no such response was recorded in the sensitive genotype. Similarly, Na + content was found to be significantly lower in the roots and shoots of the tolerant genotype as compared to the sensitive plants. Our data highlights a primal reduction in the total root length and surface area as a major component in tolerance against Na+ accumulation and salinity induced damage. Our data can be used to understand root growth and adaptation in other rice species as well as many other forage grass and cereal species under salt stress.
机译:在100 mM氯化钠(NaCl)浓度下对5种市售水稻(Oryza sativa L.)基因型KS-282,Super Basmati,KSK 133,Shaheen Basmati和DilRosh进行盐分筛选,以研究盐胁迫对根的影响并了解根在盐分适应中的作用。在控制和胁迫条件下,监测了所有基因型的形态生理属性和节水水平。在测试的基因型中,发现KS-282具有相当的耐受性,而超级巴斯马蒂则具有很高的敏感性。使用WinRhizo pro软件程序分析了根架构动态的变化。根和芽中的Na +和K +含量与形态生理生长参数和根系几何形状的变化相关。耐盐基因型在盐处理的前三天内明显减少了根长,侧根密度并降低了表面积。在最初的延迟后,生长逐渐维持,而敏感基因型中未记录到这种反应。同样,与敏感植物相比,在耐性基因型的根和芽中,Na +含量显着降低。我们的数据强调了总根长和表面积的初步减少,这是耐Na +积累和盐度诱导的伤害的主要成分。我们的数据可用于了解盐胁迫下其他水稻品种以及许多其他牧草和谷物品种的根系生长和适应性。

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