Morpho-physiological and molecular responses of two Libyan bread wheat cultivars to plant growth regulators under salt stress

动素 赤霉素 磷酸烯醇式丙酮酸羧化酶 生物 发芽 赤霉素 植物 生物化学 光合作用 外植体培养 体外
作者
El Hadi Hadia,A. Slama,Leila Romdhane,Hatem Cheikh M’hamed,Ahmed Houssein Abodoma,Mohamed Ali Saed Fahej,Leila Radhouane
出处
期刊:Italian Journal of Agronomy [PAGEPress (Italy)]
卷期号:15 (3): 246-252 被引量:6
标识
DOI:10.4081/ija.2020.1633
摘要

To study the effects of salt stress and plant growth regulators (kinetin, gibberellic acid, potassium) on growth, yield, glycine betaine content, phosphoenolpyruvate carboxylase (PEPC) and ribulose biphosphate carboxylase (RBC) gene expression of two Libyan bread wheat varieties, a factorial design of greenhouse experiment with three replications was conducted. Results revealed that salt stress significantly reduced plant growth and productivity of both varieties. Moreover, the addition of kinetin + potassium and gibberellic acid + potassium had improved the performance of the morpho-metric parameters of both genotypes under salt stress; but the performance was more effective for kinetin treatment than for gibberellic acid. At the biochemical level, the results showed that salt stress increased glycine betaine contents in both varieties with different proportions. This increase is more elevated in the presence of kinetin + potassium than the treatment with gibberellic acid+ potassium, which showed an almost similar result as in only salt stress. At the molecular level, the effects of salt stress and plant growth regulators on the PEPC and RBC gene expression showed that the increase was significantly higher for kinetin, gibberellic acid, and salt stress when compared to the control. Highlights - Salt stress reduced plant growth and productivity of bread wheat varieties. - Growth regulator improved the performance of the morphometric parameters. - The performance was more effective for kinetin treatment than for gibberellic acid. - Kinetin improved the glycine betaine gene expression more than gibberellic acid. - Kinetin increased significantly the phosphoenolpyruvate carboxylase and ribulose biphosphate carboxylase gene expression.
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