Bharath Pulimamidi, Gahir Shashibhushan, Raghavendra Agepati S
Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, India.
Front Plant Sci. 2024 Nov 4;15:1491428. doi: 10.3389/fpls.2024.1491428. eCollection 2024.
Stomatal closure is essential to conserve water and prevent microbial entry into leaves. Alkalinization of guard cells is common during closure by factors such as abscisic acid, methyl jasmonate, and even darkness. Despite reports pointing at the role of cytosolic pH, there have been doubts about whether the guard cell pH change is a cause for stomatal closure or an associated event, as changes in membrane potential or ion flux can modulate the pH. However, the importance of cytosolic alkalinization is strongly supported by the ability of externally added weak acids to restrict stomatal closure. Using genetically encoded pH sensors has confirmed the rise in pH to precede the elevation of Ca levels. Yet some reports claim that the rise in pH follows the increase in ROS or Ca. We propose a feedback interaction among the rise in pH or ROS or Ca to explain the contrasting opinions on the positioning of pH rise. Stomatal closure and guard cell pH changes are compromised in mutants deficient in vacuolar H-ATPase (V-ATPase), indicating the importance of V-ATPase in promoting stomatal closure. Thus, cytosolic pH change in guard cells can be related to the rise in ROS and Ca, leading to stomatal closure. We emphasize that cytosolic pH in stomatal guard cells deserves further attention and evaluation.
气孔关闭对于节约水分和防止微生物进入叶片至关重要。在脱落酸、茉莉酸甲酯甚至黑暗等因素导致气孔关闭的过程中,保卫细胞碱化是常见现象。尽管有报道指出胞质pH的作用,但对于保卫细胞pH变化是气孔关闭的原因还是相关事件仍存在疑问,因为膜电位或离子通量的变化可以调节pH。然而,外部添加弱酸限制气孔关闭的能力有力地支持了胞质碱化的重要性。使用基因编码的pH传感器已证实pH升高先于Ca水平的升高。然而,一些报道称pH升高跟随ROS或Ca的增加。我们提出pH、ROS或Ca升高之间存在反馈相互作用,以解释关于pH升高定位的不同观点。液泡H-ATP酶(V-ATP酶)缺陷的突变体中气孔关闭和保卫细胞pH变化受损,表明V-ATP酶在促进气孔关闭中的重要性。因此,保卫细胞胞质pH变化可能与ROS和Ca的升高有关,导致气孔关闭。我们强调气孔保卫细胞中的胞质pH值得进一步关注和评估。