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Abscisic acid (ABA) seed soaking induced changes in physiology of two wheat cultivars under water stress

机译:脱落酸浸种诱导水分胁迫下两个小麦品种的生理变化

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Wheat production is severely limited by water stress. Exploring water stress resistance physiological mechanisms for different wheat genotypes is of prime importance to find out new drought resistant gene resources. During present investigation two local primitive cultivars of wheat Viz. 011251 and 011393 belonging to arid regions of the country, were used to study the response of cultivars evolved in the natural arid environment to water stress and Abscisic acid (ABA) seed soaking at two important growth stages of the crop (booting and grain filling) in a pot experiment. Changes in endogenous ABA (bound and free) and the growth promoting hormones i.e. trans zeatin ribiside (t-zr), Indole-3-Acetic Acid (IAA) and gibberellins (GA) were monitored. Stomatal conductance and transpiration rate were also measured. Re-watering was done to study the recovery process as well. Significant decrease in all growth promoting phytohormones (IAA, t-zr and GA), transpiration rate and stomatal conductance were observed while an increase was noticed in endogenous ABA (bound and free) under water stress condition at both growth stages. ABA seed soaking helped in mitigating the harmful effects of water stress in both cultivars. But this response was genotype specific and diminished with the progression of the developmental stage of the crop.
机译:水分胁迫严重限制了小麦的产量。探索不同基因型的水分胁迫生理机制对于寻找新的抗旱基因资源至关重要。在目前的调查中,小麦Viz的两个当地原始品种。属于该国干旱地区的011251和011393用于研究在自然干旱环境中进化的栽培品种对作物两个重要生长阶段(孕穗期和灌浆期)的水分胁迫和脱落酸(ABA)种子浸种的响应。在盆栽实验中。监测内源ABA(结合和游离)和促进生长的激素,即反玉米蛋白核糖苷(t-zr),吲哚-3-乙酸(IAA)和赤霉素(GA)的变化。还测量了气孔导度和蒸腾速率。还进行了浇水以研究恢复过程。在两个生长阶段,在水分胁迫条件下,观察到所有促进生长的植物激素(IAA,t-zr和GA),蒸腾速率和气孔导度均显着降低,而内源ABA(结合和游离)的含量则显着增加。 ABA浸种有助于减轻两个品种中水分胁迫的有害影响。但是这种反应是基因型特异的,并且随着作物发育阶段的进展而减弱。

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