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SCF(TIR1/AFB)-auxin 信号调节根向重性过程中的 PIN 液泡运输和生长素流。

SCF(TIR1/AFB)-auxin signalling regulates PIN vacuolar trafficking and auxin fluxes during root gravitropism.

机构信息

Department of Plant Systems Biology, VIB and Department of Plant Biotechnology and Genetics, Ghent University, Gent, Belgium.

出版信息

EMBO J. 2013 Jan 23;32(2):260-74. doi: 10.1038/emboj.2012.310. Epub 2012 Dec 4.

Abstract

The distribution of the phytohormone auxin regulates many aspects of plant development including growth response to gravity. Gravitropic root curvature involves coordinated and asymmetric cell elongation between the lower and upper side of the root, mediated by differential cellular auxin levels. The asymmetry in the auxin distribution is established and maintained by a spatio-temporal regulation of the PIN-FORMED (PIN) auxin transporter activity. We provide novel insights into the complex regulation of PIN abundance and activity during root gravitropism. We show that PIN2 turnover is differentially regulated on the upper and lower side of gravistimulated roots by distinct but partially overlapping auxin feedback mechanisms. In addition to regulating transcription and clathrin-mediated internalization, auxin also controls PIN abundance at the plasma membrane by promoting their vacuolar targeting and degradation. This effect of elevated auxin levels requires the activity of SKP-Cullin-F-box(TIR1/AFB) (SCF(TIR1/AFB))-dependent pathway. Importantly, also suboptimal auxin levels mediate PIN degradation utilizing the same signalling pathway. These feedback mechanisms are functionally important during gravitropic response and ensure fine-tuning of auxin fluxes for maintaining as well as terminating asymmetric growth.

摘要

植物激素生长素的分布调节着植物发育的许多方面,包括对重力的生长反应。向地性根弯曲涉及根的下侧和上侧之间的协调和不对称细胞伸长,这是由细胞间生长素水平的差异介导的。生长素分布的不对称性是通过 PIN 形成蛋白(PIN)生长素转运蛋白活性的时空调节来建立和维持的。我们对根向地性过程中 PIN 丰度和活性的复杂调节提供了新的见解。我们表明,PIN2 的周转在受重力刺激的根的上侧和下侧受到不同但部分重叠的生长素反馈机制的差异调节。除了调节转录和网格蛋白介导的内吞作用外,生长素还通过促进其液泡靶向和降解来控制质膜上的 PIN 丰度。生长素水平升高的这种作用需要 SKP-Cullin-F-box(TIR1/AFB)(SCF(TIR1/AFB))依赖性途径的活性。重要的是,同样的信号通路也介导了亚最佳生长素水平的 PIN 降解。这些反馈机制在向地性反应中具有功能重要性,可确保精细调节生长素通量,以维持和终止不对称生长。

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