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Mechanical Induction Of Lateral Root Initiation In Arabidopsis Thaliana

机译:拟南芥侧根萌发的机械诱导

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Lateral roots are initiated postembryonically in response to environmental cues, enabling plants to explore efficiently their underground environment. However, the mechanisms by which the environment determines the position of lateral root formation are unknown. In this study, we demonstrate that in Arabidopsis thaliana lateral root initiation can be induced mechanically by either gravitropic curvature or by the transient bending of a root by hand. The plant hormone auxin accumulates at the site of lateral root induction before a primordium starts to form. Here we describe a subcellular relocalization of PIN1, an auxin transport protein, in a single protoxylem cell in response to gravitropic curvature. This relocalization precedes auxin-dependent gene transcription at the site of a new primordium. Auxin-dependent nuclear signaling is necessary for lateral root formation; arf7/19 double knock-out mutants normally form no lateral roots but do so upon bending when the root tip is removed. Signaling through arf7/19 can therefore be bypassed by root bending. These data support a model in which a root-tip-derived signal acts on downstream signaling molecules that specify lateral root identity.
机译:侧根是根据环境提示在胚胎后萌发的,使植物能够有效地探索其地下环境。但是,环境决定侧根形成位置的机制尚不清楚。在这项研究中,我们证明了在拟南芥中,侧向根的萌生可以通过重力弯曲或用手的根的瞬时弯曲机械地诱导。植物激素生长素在原基开始形成之前就积累在侧根诱导部位。在这里,我们描述了一个单一的protoxylem细胞响应重力曲率响应的PIN1,一种生长素转运蛋白的亚细胞再定位。这种重新定位在新原基位点的生长素依赖性基因转录之前。生长素依赖的核信号传导是侧根形成所必需的; arf7 / 19双敲除突变体通常不形成侧根,但在弯曲时去除根尖时会形成侧根。因此,通过根弯曲可以绕过通过arf7 / 19发出的信号。这些数据支持一种模型,在该模型中,来自根尖的信号作用于指定横向根同一性的下游信号分子。

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