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Reversal by Green Light of Blue Light-stimulated Stomatal Opening in Intact, Attached Leaves of Arabidopsis Operates Only in the Potassium-dependent, Morning Phase of Movement

机译:绿光逆转完整刺激的拟南芥附着叶的蓝色光刺激气孔开口仅在钾依赖的运动早期阶段起作用

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Green light reversal of blue light-stimulated stomatal opening was discovered in isolated stomata. The present study shows that the response also occurs in stomata from intact leaves. Arabidopsis thaliana plants were grown in a growth chamber under blue, red and green light. Removal of the green light opened the stomata and restoration of green light closed them to baseline values under experimental conditions that rule out a mesophyll-mediated effect. Assessment of the response to green light over a daily time course showed that the stomatal sensitivity to green light was observed only in the morning, which coincided with the use of potassium as a guard cell osmoticum. Sensitivity to green light was absent during the afternoon phase of stomatal movement, which was previously shown to be dominated by sucrose osmoregulation in Vicia faba. Hence, the shift away from potassium-based osmoregulation in guard cells is further postulated to entail a shift from blue light to photosynthesis as the primary component of the stomatal response to light. Stomata from intact leaves of the zeaxanthin-less, npq1 mutant of Arabidopsis failed to respond to the removal or restoration of green light in the growth chamber, or to short, high fluence pulses of blue or green light. These data confirm previous studies showing that npq1 stomata are devoid of a specific blue light response. In contrast, stomata from intact leaves of phot1 phot2 double mutant plants had a reduced but readily detectable response to the removal of green light and to blue and green pulses.
机译:在孤立的气孔中发现了绿光逆转的蓝光刺激的气孔开口。本研究表明,完整叶片的气孔中也有反应。拟南芥植物在蓝色,红色和绿色光下的生长室中生长。在排除叶肉介导作用的实验条件下,去除绿光可打开气孔,恢复绿光可将其关闭至基线值。在每天的时间过程中评估对绿光的反应表明,气孔对绿光的敏感性仅在早晨观察到,这与使用钾作为保卫细胞渗透剂相吻合。在气孔运动的下午阶段,对绿光的敏感性不高,以前被证明是蚕豆中蔗糖渗透调节作用的主要表现。因此,进一步假设在保卫细胞中钾离子渗透调节作用的转变将导致从蓝光转变为光合作用,这是气孔对光响应的主要组成部分。缺乏玉米黄素的拟南芥npq1突变体完整叶子的气孔不能响应生长室中绿光的去除或恢复,也不能响应短时高通量的蓝光或绿光。这些数据证实了先前的研究,这些研究表明npq1气孔没有特定的蓝光响应。相反,来自phot1 phot2双重突变植物完整叶片的气孔对绿光的去除以及对蓝光和绿光脉冲的响应降低了,但很容易检测到。

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