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根冠角度和向重力性反应速率在拟南芥 pgm-1 突变体中是解耦的。

Root cap angle and gravitropic response rate are uncoupled in the Arabidopsis pgm-1 mutant.

机构信息

Department of Botany & Microbiology, Ohio Wesleyan University, Delaware, OH 43015, USA.

出版信息

Physiol Plant. 2011 Apr;141(4):373-82. doi: 10.1111/j.1399-3054.2010.01439.x. Epub 2011 Jan 14.

DOI:10.1111/j.1399-3054.2010.01439.x
PMID:21143486
Abstract

The sedimentation of starch-filled plastids is thought to be the primary mechanism by which gravity is perceived in roots. Following gravity perception, auxin redistribution toward the lower flank of roots, initiated in the root cap, is believed to play a role in regulation of the gravity response. Amyloplast sedimentation and auxin flux, however, have never been directly linked. The overall aim of this study was to investigate the relationship among plastid sedimentation, gravitropism and auxin flux. Our data show that pgm-1 roots respond to gravity at one-third the rate of wild-type (WT) roots. Maintaining the root tip at a constant angle using image analysis coupled to a rotating stage resulted in a constant rate of response regardless of the angle of tip orientation in pgm-1 mutants, in contrast to the responses of WT and pin3-1 mutants, which showed increasing response rates as the tip was constrained at greater angles. To indirectly visualize auxin flux following reorientation, we generated a pgm-1 mutant line expressing the DR5::GFPm reporter gene. In WT roots a GFP gradient was observed with a maximum along the lower flank, whereas pgm-1 roots formed a GFP maximum in the central columella but lacked any observable gradient up to 6 h following reorientation. Our study suggests that the relationship between root cap angle and gravitropic response depends upon plastid sedimentation-based gravity sensing and supports the idea that there are multiple, overlapping sensory response networks involved in gravitropism.

摘要

淀粉填充质体的沉降被认为是根部感知重力的主要机制。在感知重力之后,生长素向根冠下部的重新分配被认为在调节重力响应中起作用。然而,质体沉降和生长素流从未直接联系过。本研究的总体目标是研究质体沉降、向重力性和生长素流之间的关系。我们的数据表明,pgm-1 根对重力的响应速度是野生型 (WT) 根的三分之一。使用图像分析与旋转台相结合,将根尖保持在恒定角度,导致无论根尖取向角度如何,pgm-1 突变体的响应速率都是恒定的,与 WT 和 pin3-1 突变体的响应形成对比,WT 和 pin3-1 突变体在根尖受到更大角度的约束时表现出响应速率增加。为了在重新定向后间接可视化生长素流,我们生成了一个表达 DR5::GFPm 报告基因的 pgm-1 突变体系。在 WT 根中,观察到 GFP 梯度沿下侧翼最大,而 pgm-1 根在中央柱状细胞中形成 GFP 最大值,但在重新定向后 6 小时内缺乏任何可观察到的梯度。我们的研究表明,根冠角度与向重力性响应之间的关系取决于基于质体沉降的重力感应,并支持存在多个重叠的感觉响应网络参与向重力性的观点。

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