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Agro-Physiologic Responses and Stress-Related Gene Expression of Four Doubled Haploid Wheat Lines under Salinity Stress Conditions

机译:在盐度胁迫条件下在盐度胁迫条件下的四倍双倍倍麦系的农业生理反应和应激相关基因表达

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摘要

Productivity of wheat can be enhanced using salt-tolerant genotypes. However, the assessment of salt tolerance potential in wheat through agro-physiological traits and stress-related gene expression analysis could potentially minimize the cost of breeding programs and be a powerful way for the selection of the most salt-tolerant genotype. The study evaluated the salt tolerance potential of four doubled haploid lines of wheat and compared them with the check cultivar Sakha-93 using an extensive set of agro-physiologic parameters and salt-stress-related gene expressions. The results indicated that the five genotypes tested displayed reduction in all traits evaluated except the canopy temperature and electrical conductivity, which had the greatest decline occurring in the check cultivar and the least decline in DHL2. The genotypes DHL21 and DHL5 exhibited increased expression rate of salt-stress-related genes under salt stress conditions. The multiple linear regression model and path coefficient analysis showed a coefficient of determination of 0.93. Concluding, the number of spikelets, and/or number of kernels were identified to be unbiased traits for assessing wheat DHLs under salinity conditions, given their contribution and direct impact on the grain yield. Moreover, the two most salt-tolerant genotypes DHL2 and DHL21 can be useful as genetic resources for future breeding programs.
机译:使用耐盐基因型可以增强小麦的生产率。然而,通过农业生理性状和胁迫相关基因表达分析评估小麦的耐盐潜力可能会使育种计划的成本最大限度地减少育种计划的成本,并成为选择最耐盐基因型的有力方法。该研究评估了小麦四倍双倍单倍体线的耐盐潜力,并使用广泛的农理参数和盐胁迫相关基因表达与检查品种Sakha-93进行比较。结果表明,除顶篷温度和电导率外,检测到所有特征的五种基因型显示,在检查品种和DHL2中的最小下降中发生了最大的下降。基因型DHL21和DHL5在盐胁迫条件下表现出盐应激相关基因的表达率。多元线性回归模型和路径系数分析显示了0.93的测定系数。结论性,鉴定了粒细胞的数量和/或核数,用于评估盐度条件下的小麦DHL的性状,鉴于它们对籽粒产量的贡献和直接影响。此外,两种最耐盐基因型DHL2和DHL21可用作未来育种计划的遗传资源。

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