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Canalization of auxin flow by Aux/IAA-ARF-dependent feedback regulation of PIN polarity.

机译:通过Aux / IAA-ARF依赖于PIN极性的反馈调节来形成生长素流。

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摘要

Plant development is characterized by a profound ability to regenerate and form tissues with new axes of polarity. An unsolved question concerns how the position within a tissue and cues from neighboring cells are integrated to specify the polarity of individual cells. The canalization hypothesis proposes a feedback effect of the phytohormone auxin on the directionality of intercellular auxin flow as a means to polarize tissues. Here we identify a cellular and molecular mechanism for canalization. Local auxin application, wounding, or auxin accumulation during de novo organ formation lead to rearrangements in the subcellular polar localization of PIN auxin transport components. This auxin effect on PIN polarity is cell-specific, does not depend on PIN transcription, and involves the Aux/IAA-ARF (indole-3-acetic acid-auxin response factor) signaling pathway. Our data suggest that auxin acts as polarizing cue, which links individual cell polarity with tissue and organ polarity through control of PIN polar targeting. This feedback regulation provides a conceptual framework for polarization during multiple regenerative and patterning processes in plants.
机译:植物发育的特征是具有强大的再生能力和形成具有新极性轴的组织的能力。一个尚未解决的问题涉及如何整合组织中的位置和来自相邻细胞的提示以指定单个细胞的极性。渠化假说提出了植物激素生长素对细胞间生长素流动的方向性的反馈作用,作为极化组织的一种手段。在这里,我们确定了渠化的细胞和分子机制。从头器官形成过程中局部生长素的应用,创伤或生长素的积累导致PIN生长素转运成分在亚细胞极性定位中的重排。生长素对PIN极性的影响是细胞特异性的,不依赖于PIN转录,并且涉及Aux / IAA-ARF(吲哚-3-乙酸-生长素响应因子)信号传导途径。我们的数据表明,生长素可以作为极化提示,通过控制PIN极性定位将个体细胞的极性与组织和器官的极性联系起来。该反馈调节为植物的多个再生和构图过程中的极化提供了一个概念框架。

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