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Local auxin production underlies a spatially restricted neighbor-detection response in Arabidopsis

机译:拟南芥中局部生长素的产生是空间受限的邻居检测反应的基础

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摘要

Competition for light triggers numerous developmental adaptations known as the “shade-avoidance syndrome” (SAS). Important molecular events underlying specific SAS responses have been identified. However, in natural environments light is often heterogeneous, and it is currently unknown how shading affecting part of a plant leads to local responses. To study this question, we analyzed upwards leaf movement (hyponasty), a rapid adaptation to neighbor proximity, in Arabidopsis. We show that manipulation of the light environment at the leaf tip triggers a hyponastic response that is restricted to the treated leaf. This response is mediated by auxin synthesized in the blade and transported to the petiole. Our results suggest that a strong auxin response in the vasculature of the treated leaf and auxin signaling in the epidermis mediate leaf elevation. Moreover, the analysis of an auxin-signaling mutant reveals signaling bifurcation in the control of petiole elongation versus hyponasty. Our work identifies a mechanism for a local shade response that may pertain to other plant adaptations to heterogeneous environments.
机译:对光的竞争引发了许多发展适应性变化,被称为“避影综合症”(SAS)。已经确定了特定SAS反应基础的重要分子事件。但是,在自然环境中,光通常是异质的,目前尚不清楚影响植物部分的阴影如何导致局部响应。为了研究这个问题,我们分析了拟南芥中向上的叶片运动(hypoasty),这是对邻近植物的快速适应。我们显示,叶尖处的光环境的操纵触发了仅限于处理的叶的鼻下反应。该反应由叶片中合成的生长素介导并转运至叶柄。我们的结果表明,处理过的叶片的脉管系统中强烈的生长素应答和表皮中的生长素信号传导介导了叶片的升高。此外,对生长素信号转导突变体的分析揭示了在控制叶柄伸长与下垂之间的信号分叉。我们的工作确定了一种局部阴影响应的机制,该机制可能与其他植物对异构环境的适应有关。

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