微管骨架与异三聚体G蛋白协同参与ABA诱导的气孔运动

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以拟南芥野生型、G蛋白α亚基缺失突变体(gpa1-3,gpa1-4)及带有GFP-α-tubulin-6标记的gpa1突变体等为材料,利用药理学实验、激光共聚焦扫描显微镜观察、非损伤微测等方法研究在ABA诱导气孔运动的信息传递通路中,异三聚体G蛋白与微管骨架之间的功能关系,深入了解气孔运动机理.结果表明:gpa1突变体叶片蒸腾失水率高于野生型.气孔开度实验中,突变体对ABA抑制气孔开放作用不敏感,但微管特异性解聚剂Oryzalin在一定程度上可恢复其对ABA的响应.Ca~(2+)螯合剂BAPTA-A
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