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首页> 外文期刊>African Journal of Agricultural Research >Physiological behavior of wheat genotypes from Algerian semi-arid regions grown under salt stress
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Physiological behavior of wheat genotypes from Algerian semi-arid regions grown under salt stress

机译:盐胁迫下阿尔及利亚半干旱地区小麦基因型的生理行为

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摘要

The performances of the Algerian local genotypes Mohamed Ben Bachir and Oued Zenati tested under NaCl stress, show an ability to withstand moderate salt concentrations. It appears that salinity affected normal physiological functions of wheat genotypes. This was expressed by the imbalance in water relation, mineral balance and proline accumulation in the two genotypes. It was noted that these genotypes showed a low leaf water potential (Ψw) which is associated with suitable relative water content (RWC), which maintains the tissues hydration. It seems that the decline in water and osmotic potential is not due to water loss but to a significant accumulation of Na+?and proline in which tissues can feed satisfactorily with water and this is possible through osmorégulation mechanism sealed by the fundamental role of membrane integrity to regulate cellular permeability. Physiologically, it is a quantitative rather than a qualitative difference between the two genotypes tested in this study. The better physiological mechanisms associated with less affected water relation and Na+?efflux probably contributed to the higher salt tolerance in M.B. Bachir than in O. Zenati genotype. Therefore, these genotypes could be considered as salt tolerant and they are suitable in improving durum wheat for salt tolerance.
机译:在NaCl胁迫下测试的阿尔及利亚本地基因型Mohamed Ben Bachir和Oued Zenati的性能显示了能够承受适度盐分的能力。盐度似乎影响了小麦基因型的正常生理功能。两种基因型之间的水分关系,矿物质平衡和脯氨酸积累不平衡表现了这一点。注意到这些基因型显示出低的叶水势(waterw),其与合适的相对水含量(RWC)有关,其维持了组织的水合作用。似乎水和渗透潜能的下降不是由于水分流失,而是由于Na +和脯氨酸的大量积累,其中组织可以令人满意地喂食水,这可能是通过由膜完整性对细胞的基本作用所密封的渗透调节机制来实现的。调节细胞通透性。在生理上,这是本研究中测试的两种基因型之间的定量差异,而不是质量差异。更好的生理机制与较少的水关系和Na +流出相关,可能有助于提高M.B的耐盐性。 Bachir比O. Zenati基因型高。因此,这些基因型可以被认为是耐盐的,并且它们适合于提高硬粒小麦的耐盐性。

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