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热致性叶片运动的发育编程。

Developmental Programming of Thermonastic Leaf Movement.

机构信息

Department of Chemistry, Seoul National University, Seoul 08826, Korea.

Department of Biological Sciences, Seoul National University, Seoul 08826, Korea.

出版信息

Plant Physiol. 2019 Jun;180(2):1185-1197. doi: 10.1104/pp.19.00139. Epub 2019 Apr 4.

Abstract

Plants exhibit diverse polar behaviors in response to directional and nondirectional environmental signals, termed tropic and nastic movements, respectively. The ways in which plants incorporate directional information into tropic behaviors is well understood, but it is less well understood how nondirectional stimuli, such as ambient temperatures, specify the polarity of nastic behaviors. Here, we demonstrate that a developmentally programmed polarity of auxin flow underlies thermo-induced leaf hyponasty in Arabidopsis (). In warm environments, PHYTOCHROME-INTERACTING FACTOR4 (PIF4) stimulates auxin production in the leaf. This results in the accumulation of auxin in leaf petioles, where PIF4 directly activates a gene encoding the PINOID (PID) protein kinase. PID is involved in polarization of the auxin transporter PIN-FORMED3 to the outer membranes of petiole cells. Notably, the leaf polarity-determining ASYMMETRIC LEAVES1 (AS1) directs the induction of to occur predominantly in the abaxial petiole region. These observations indicate that the integration of PIF4-mediated auxin biosynthesis and polar transport, and the AS1-mediated developmental shaping of polar auxin flow, coordinate leaf thermonasty, which facilitates leaf cooling in warm environments. We believe that leaf thermonasty is a suitable model system for studying the developmental programming of environmental adaptation in plants.

摘要

植物表现出多样的极性行为,以响应定向和非定向环境信号,分别称为向性和感性运动。植物将定向信息纳入向性行为的方式已被很好地理解,但对于非定向刺激(如环境温度)如何指定感性运动的极性,人们的了解还较少。在这里,我们证明了生长素流的发育编程是拟南芥中热诱导叶片下弯的基础。在温暖的环境中,光形态建成相互作用因子 4(PIF4)刺激叶片中生长素的产生。这导致生长素在叶片叶柄中积累,PIF4 直接激活编码 PINOID(PID)蛋白激酶的基因。PID 参与生长素转运蛋白 PIN-FORMED3 到叶柄细胞外膜的极化。值得注意的是,决定叶片极性的不对称叶片 1(AS1)指导主要在叶片远轴叶柄区域诱导的发生。这些观察结果表明,PIF4 介导的生长素生物合成和极性运输的整合,以及 AS1 介导的极性生长素流的发育塑造,协调了叶片的热感性运动,这有助于叶片在温暖环境中散热。我们相信,叶片热感性运动是研究植物环境适应的发育编程的合适模型系统。

相似文献

1
Developmental Programming of Thermonastic Leaf Movement.热致性叶片运动的发育编程。
Plant Physiol. 2019 Jun;180(2):1185-1197. doi: 10.1104/pp.19.00139. Epub 2019 Apr 4.
2
Developmental polarity shapes thermo-induced nastic movements in plants.发育极性塑造了植物中热诱导的感性运动。
Plant Signal Behav. 2019;14(8):1617609. doi: 10.1080/15592324.2019.1617609. Epub 2019 May 14.

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