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Apoplastic and symplastic solute concentrations contribute to osmotic adjustment in bean genotypes during drought stress

机译:质外和共生溶质的浓度有助于干旱胁迫下豆基因型的渗透调节

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摘要

The present study investigates changes in the inorganic ions, proline, and endogenous abscisic acid (ABA) contents of the apoplastic and symplastic compartments of leaves from drought-tolerant (Yakutiye) and droughtsensitive (Zulbiye) cultivars of the common bean (Phaseolus vulgaris L.). Drought stress caused a decrease in leaf water potential and stomatal conductance in both cultivars. Concentrations of proline in the drought-tolerant and droughtsensitive cultivars increased in response to drought stress in both compartments. The symplastic K ~+ concentration decreased in both cultivars. However, the opposite trend was observed concerning K ~+ concentrations in the apoplastic areas. While the symplastic Na ~+ concentrations significantly decreased in the drought-tolerant cultivar, the apoplastic Na ~+ concentrations increased during drought stress. However, Na ~+ concentrations did not significantly change in either of the compartments in the drought-sensitive cultivar. The Ca ~(2+) concentrations in the sensitive cultivar significantly decreased in both compartments during drought stress. In the tolerant cultivar, the Ca ~(2+) concentration significantly increased in the symplast but decreased in the apoplast. Cl - concentrations in the tolerant cultivar did not significantly change in either compartment. In the sensitive cultivar, the Cl - concentration increased in the apoplastic area but decreased in the symplastic area. In addition, while the symplastic sap of the leaves exhibited a constant pH value, it diminished in the apoplast during drought stress. Symplastic and apoplastic ABA concentrations significantly increased in both cultivars. It might be said that inorganic ions (especially Na ~+, K ~+, and Ca ~(2+)) and ABA concentrations changed between the apoplastic and symplastic spaces to contribute to osmotic adjustment under drought stress. In addition, the drought-tolerant cultivar showed a much higher capacity to maintain osmotic adjustment between the symplast and the apoplast.
机译:本研究调查了普通豆(Phaseolus vulgaris L. )。干旱胁迫导致两个品种叶片水势和气孔导度降低。耐干旱和干旱敏感品种中脯氨酸的浓度均响应两个分区的干旱胁迫而增加。两个品种的共生钾离子浓度均降低。然而,在质外体区域观察到相反的趋势。在耐旱品种中,共生Na〜+浓度显着降低,而在干旱胁迫下,外生质Na〜+浓度增加。但是,Na +浓度在干旱敏感品种的任一区室均没有显着变化。在干旱胁迫下,两个车厢中敏感品种的Ca〜(2+)浓度均显着降低。在耐性品种中,Ca〜(2+)浓度在共生体中显着增加,而在质外体中则降低。耐性品种中的Cl-浓度在任一区室均无明显变化。在敏感品种中,质外体区域的Cl-浓度增加,而在共生区域中的Cl-浓度降低。另外,虽然叶片的共生汁液显示出恒定的pH值,但在干旱胁迫下其在质外体中减少了。在两个品种中,共生和质外ABA的浓度均显着增加。可以说,无机离子(尤其是Na〜+,K〜+和Ca〜(2+))和ABA的浓度在质外和共生空间之间发生变化,从而有助于干旱胁迫下的渗透调节。此外,耐旱品种表现出更高的维持共生体与质外体之间渗透调节的能力。

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