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Anion channel sensitivity to cytosolic organic acids implicates a central role for oxaloacetate in integrating ion flux with metabolism in stomatal guard cells

机译:阴离子通道对胞质有机酸的敏感性暗示草酰乙酸在气孔保卫细胞的离子通量与代谢整合中的重要作用

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Stomatal guard cells play a key role in gas exchange for photosynthesis and in minimizing transpirational water loss from plants by opening and closing the stomatal pore. The bulk of the osmotic content driving stomatal movements depends on ionic fluxes across both the plasma membrane and tonoplast, the metabolism of organic acids, primarily Mal (malate), and its accumulation and loss. Anion channels at the plasma membrane are thought to comprise a major pathway for Mal efflux during stomatal closure, implicating their key role in linking solute flux with metabolism. Nonetheless, little is known of the regulation of anion channel current (ICl) by cytosolic Mal or its immediate metabolite OAA (oxaloacetate). In the present study, we have examined the impact of Mal, OAA and of the monocarboxylic acid anion acetate in guard cells of Vicia faba L. and report that all three organic acids affect ICl, but with markedly different characteristics and sidedness to their activities. Most prominent was a suppression of ICl by OAA within the physiological range of concentrations found in vivo . These findings indicate a capacity for OAA to co-ordinate organic acid metabolism with ICl through the direct effect of organic acid pool size. The findings of the present study also add perspective to in vivo recordings using acetate-based electrolytes.Abbreviations: Ac, acetate; ALMT12, aluminium-activated, malate transporter 12; [Ca2+]i, cytosolic-free [Ca2+]; Mal, malate; OAA, oxaloacetate; TEA-Cl, tetraethylammonium chloride
机译:气孔保卫细胞在通过光合作用进行气体交换以及通过打开和关闭气孔来最小化植物蒸腾作用水分损失中起关键作用。驱动气孔运动的大部分渗透量取决于穿过质膜和液泡膜的离子通量,有机酸(主要是Mal(苹果酸))的代谢及其积累和损失。质膜上的阴离子通道被认为是气孔关闭过程中Mal流出的主要途径,暗示了它们在将溶质通量与代谢联系在一起的关键作用。尽管如此,人们对细胞质Mal或其直接代谢产物OAA(草酰乙酸)对阴离子通道电流(ICl)的调节知之甚少。在本研究中,我们检查了Mal,OAA和单羧酸阴离子乙酸酯在蚕豆保卫细胞中的影响,并报告了这三种有机酸均会影响ICl,但它们的活性和活性具有明显不同。最突出的是在体内发现的生理浓度范围内,OAA对ICl的抑制作用。这些发现表明,通过有机酸池大小的直接影响,OAA与ICl协调有机酸代谢的能力。本研究的发现还为使用醋酸盐基电解质的体内记录增添了前景。 ALMT12,铝激活的苹果酸转运蛋白12; [Ca2 +] i,不含胞质[Ca2 +];马尔,苹果酸; OAA,草酰乙酸; TEA-Cl,氯化四乙铵

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