首页> 美国卫生研究院文献>Journal of Experimental Botany >Natural variation in stomatal response to closing stimuli among Arabidopsis thaliana accessions after exposure to low VPD as a tool to recognize the mechanism of disturbed stomatal functioning
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Natural variation in stomatal response to closing stimuli among Arabidopsis thaliana accessions after exposure to low VPD as a tool to recognize the mechanism of disturbed stomatal functioning

机译:暴露于低VPD后拟南芥种质间气孔对关闭刺激的响应的自然变化作为识别气孔功能障碍机制的工具

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摘要

Stomatal responses to closing stimuli are disturbed after long-term exposure of plants to low vapour pressure deficit (VPD). The mechanism behind this disturbance is not fully understood. Genetic variation between naturally occurring ecotypes can be helpful to elucidate the mechanism controlling stomatal movements in different environments. We characterized the stomatal responses of 41 natural accessions of Arabidopsis thaliana to closing stimuli (ABA and desiccation) after they had been exposed for 4 days to moderate VPD (1.17 kPa) or low VPD (0.23 kPa). A fast screening system was used to test stomatal response to ABA using chlorophyll fluorescence imaging under low O2 concentrations of leaf discs floating on ABA solutions. In all accessions stomatal conductance (gs) was increased after prior exposure to low VPD. After exposure to low VPD, stomata of 39 out of 41 of the accessions showed a diminished ABA closing response; only stomata of low VPD-exposed Map-42 and C24 were as responsive to ABA as moderate VPD-exposed plants. In response to desiccation, most of the accessions showed a normal stomata closing response following low VPD exposure. Only low VPD-exposed Cvi-0 and Rrs-7 showed significantly less stomatal closure compared with moderate VPD-exposed plants. Using principle component analysis (PCA), accessions could be categorized to very sensitive, moderately sensitive, and less sensitive to closing stimuli. In conclusion, we present evidence for different stomatal responses to closing stimuli after long-term exposure to low VPD across Arabidopsis accessions. The variation can be a useful tool for finding the mechanism of stomatal malfunctioning.
机译:植物长期暴露于低蒸气压亏缺(VPD)后,气孔对关闭刺激的反应受到干扰。尚未完全了解这种干扰的机制。自然发生的生态型之间的遗传变异有助于阐明控制不同环境中气孔运动的机制。我们表征了41种拟南芥天然种对闭合刺激(ABA和干燥)的气孔响应,这些种已暴露于中度VPD(1.17 kPa)或低VPD(0.23 kPa)4天。在低O2浓度的漂浮在ABA溶液上的叶盘上,使用叶绿素荧光成像技术,使用快速筛选系统测试气孔对ABA的反应。在所有种质中,事先暴露于低VPD后气孔导度(gs)增加。暴露于低VPD后,41个种质中的39个气孔显示出ABA闭合反应减弱。只有低VPD暴露的Map-42和C24的气孔对ABA的反应与中等VPD暴露的植物相同。在干燥过程中,低VPD暴露后,大多数种质表现出正常的气孔关闭反应。与中度VPD暴露的植物相比,仅低VPD暴露的Cvi-0和Rrs-7的气孔关闭显着减少。使用主成分分析(PCA),可以将种质分为非常敏感,中等敏感和对闭合刺激不太敏感。总之,我们提出了在拟南芥属种间长期接触低VPD后长期不同的气孔响应关闭气孔的证据。这种变化可能是发现气孔功能不全的有用工具。

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