Alvim Fernanda A L S, Alvim Jonas Chaves, Hibberd Julian M, Harvey Andrew R, Blatt Michael R
Laboratory of Plant Physiology and Biophysics, Bower Building, University of Glasgow, Glasgow G12 8QQ, UK.
Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EA, UK.
Plant Physiol. 2025 Feb 7;197(2). doi: 10.1093/plphys/kiaf039.
Accelerating stomatal kinetics through synthetic optogenetics and mutations that enhance guard cell K+ flux has proven a viable strategy to improve water use efficiency and biomass production. Stomata of the model C4 species Gynandropsis gynandra, a relative of the C3 plant Arabidopsis thaliana, are similarly fast to open and close. We identified and cloned the guard cell rectifying outward K+ channel (GROK) of Gynandropsis and showed that GROK is preferentially expressed in stomatal guard cells. GROK is homologous to the Arabidopsis guard cell K+ channel GORK and, expressed in oocytes, yields a K+ current consistent with that of Gynandropsis guard cells. Complementing the Arabidopsis gork mutant with GROK promoted K+ channel gating and K+ flux, increasing stomatal kinetics and yielding gains in water use efficiency and biomass with varying light, especially under water limitation. Our findings demonstrate the potential for engineering a C4 K+ channel into guard cells of a C3 species, and they speak to the puzzle of how C4 species have evolved mechanisms that enhance water use efficiency and growth under stress.
通过合成光遗传学和增强保卫细胞钾离子通量的突变来加速气孔动力学,已被证明是提高水分利用效率和生物量生产的可行策略。模式C4植物白花菜(与C3植物拟南芥有亲缘关系)的气孔开闭同样迅速。我们鉴定并克隆了白花菜的保卫细胞外向整流钾离子通道(GROK),并表明GROK在气孔保卫细胞中优先表达。GROK与拟南芥保卫细胞钾离子通道GORK同源,在卵母细胞中表达时,产生的钾离子电流与白花菜保卫细胞的一致。用GROK补充拟南芥gork突变体可促进钾离子通道门控和钾离子通量,增加气孔动力学,并在不同光照条件下,尤其是在水分限制条件下,提高水分利用效率和生物量。我们的研究结果证明了将C4钾离子通道工程化到C3植物保卫细胞中的潜力,也揭示了C4植物如何进化出在胁迫下提高水分利用效率和生长的机制这一谜题。