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Osmotic adjustment and hormonal regulation of stomatal responses to vapour pressure deficit in sunflower

机译:向日葵气孔对蒸气压缺乏的渗透调节和激素调节

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摘要

Dynamic variation of the stomatal pore in response to changes in leaf–air vapour pressure difference (VPD) constitutes a critical regulation of daytime gas exchange. The stomatal response to VPD has been associated with both foliage abscisic acid (ABA) and leaf water potential (Ψ  ); however, causation remains a matter of debate. Here, we seek to separate hydraulic and hormonal control of stomatal aperture by manipulating the osmotic potential of sunflower leaves. In addition, we test whether stomatal responses to VPD in an ABA-deficient mutant ( ) of sunflower are similar to the wild type. Stomatal apertures during VPD transitions were closely linked with foliage ABA levels in sunflower plants with contrasting osmotic potentials. In addition, we observed that the inability to synthesize ABA at high VPD in plants was associated with no dynamic or steady-state stomatal response to VPD. These results for sunflower are consistent with a hormonal, ABA-mediated stomatal responses to VPD rather than a hydraulic-driven stomatal response to VPD.
机译:气孔的动态变化响应叶片空气压力差(VPD)的变化构成了白天气体交换的关键调节。对VPD的气孔反应与叶片脱落酸(ABA)和叶片水势(Ψ)有关;但是,因果关系仍然是一个争论的问题。在这里,我们试图通过操纵向日葵叶片的渗透潜能来分开对气孔孔径​​进行水力和激素控制。此外,我们测试了向日葵缺乏ABA的突变体()中对VPD的气孔响应是否与野生型相似。 VPD过渡期间的气孔孔径与具有相反渗透势的向日葵植物的叶片ABA水平密切相关。此外,我们观察到无法在高VPD的植物中合成ABA与对VPD的动态或稳态气孔响应无关。向日葵的这些结果与激素介导的对VPD的气孔反应而非液压驱动的对VPD的气孔反应一致。

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