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A gravitropic stimulus alters the distribution of EHB1 a negative effector of root gravitropism in Arabidopsis

机译:重力刺激改变EHB1的分布EHB1是拟南芥根向重力的负面影响因子

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摘要

In Arabidopsis gravitropism is affected by two antagonistically interacting proteins, AGD12 (ADP‐RIBOSYLATION FACTOR GTPase‐ACTIVATING PROTEIN) and EHB1 (ENHANCED BENDING 1). While AGD12 enhances gravitropic bending, EHB1 functions as a negative element. To further characterize their cellular function, we analyzed the location of AGD12‐GFP and EHB1‐GFP fusion proteins in the root apex by confocal laser‐scanning microscopy after gravitropic stimulation. For this purpose, a novel method of microscopic visualization was developed with the objective and root axes aligned allowing an improved and comparable discernment of the fluorescence gradient across the columella. In vertical roots, both proteins were localized symmetrically and occurred preferentially in the outer layers of the columella. After reorienting roots horizontally, EHB1‐GFP accumulated in the upper cell layers of the columella, that is, opposite to the gravity vector. The gravity‐induced EHB1‐GFP asymmetry disappeared after reorienting the roots back into the vertical position. No such asymmetry occurred with AGD12‐GFP. Our findings reveal that after a gravitropic stimulus the cellular ratio between EHB1 and AGD12 is affected differently in the upper and lower part of the root. Its impact as a significant signaling event that ultimately affects the redirection of the lateral auxin flux toward the lower site of the root is discussed.
机译:在拟南芥中,引力性受两种拮抗相互作用的蛋白AGD12(ADP-核糖基化因子GTPase-活化蛋白)和EHB1(增强弯曲1)的影响。尽管AGD12增强了重力弯曲,但EHB1却起到了负面作用。为了进一步表征它们的细胞功能,我们通过重心刺激后的共聚焦激光扫描显微镜分析了AGD12-GFP和EHB1-GFP融合蛋白在根尖中的位置。为此目的,开发了一种新颖的显微镜可视化方法,其物镜轴和根轴对齐,从而可以更好地,可比地识别整个小柱的荧光梯度。在垂直的根中,两种蛋白质对称定位,并优先出现在小柱的外层。水平调整根的方向后,EHB1-GFP累积在小柱的上部细胞层中,即与重力矢量相反。将根重新定向到垂直位置后,重力引起的EHB1-GFP不对称性消失了。 AGD12-GFP没有发生这种不对称性。我们的发现表明,在重力刺激之后,根上部和下部中EHB1和AGD12之间的细胞比例受到不同的影响。讨论了其作为重要的信号事件的影响,最终影响了侧生长素通量向根部下部位置的重定向。

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