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Auxin-dependent regulation of lateral root positioning in the basal meristem of Arabidopsis.

机译:生长素依赖的拟南芥基分生组织中侧根定位的调节。

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摘要

In plants, the developmental mechanisms that regulate the positioning of lateral organs along the primary root are currently unknown. We present evidence on how lateral root initiation is controlled in a spatiotemporal manner in the model plant Arabidopsis thaliana. First, lateral roots are spaced along the main axis in a regular left-right alternating pattern that correlates with gravity-induced waving and depends on AUX1, an auxin influx carrier essential for gravitropic response. Second, we found evidence that the priming of pericycle cells for lateral root initiation might take place in the basal meristem, correlating with elevated auxin sensitivity in this part of the root. This local auxin responsiveness oscillates with peaks of expression at regular intervals of 15 hours. Each peak in the auxin-reporter maximum correlates with the formation of a consecutive lateral root. Third, auxin signaling in the basal meristem triggers pericycle cells for lateral root initiation prior to the action of INDOLE-3-ACETIC ACID14 (SOLITARY ROOT).
机译:在植物中,目前尚不清楚调节侧器官沿初生根定位的发育机制。我们提供了关于如何在模型植物拟南芥中以时空方式控制侧根启动的证据。首先,侧根沿主轴线以规则的左右交替模式排列,与重力感应挥动相关,并取决于AUX1,这是重力反应所必需的生长素流入载体。其次,我们发现有证据表明,用于侧向根部引发的周细胞的引发可能发生在基底分生组织中,这与根部这一部分中植物生长素的敏感性升高有关。这种局部的生长素反应性以规则的15小时间隔随着表达的峰值而振荡。植物生长素报告基因最大值中的每个峰与连续的侧根的形成相关。第三,基底分生组织中的生长素信号传导会在INDOLE-3-ACETIC ACID14(SOLITARY ROOT)作用之前触发周向细胞的侧向根引发。

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