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开花植物根系中的重力信号传导

Gravity Signaling in Flowering Plant Roots.

作者信息

Su Shih-Heng, Keith Marie A, Masson Patrick H

机构信息

Laboratory of Genetics, University of Wisconsin-Madison, 425G Henry Mall, Madison, WI 53706, USA.

出版信息

Plants (Basel). 2020 Sep 29;9(10):1290. doi: 10.3390/plants9101290.

Abstract

Roots typically grow downward into the soil where they anchor the plant and take up water and nutrients necessary for plant growth and development. While the primary roots usually grow vertically downward, laterals often follow a gravity set point angle that allows them to explore the surrounding environment. These responses can be modified by developmental and environmental cues. This review discusses the molecular mechanisms that govern root gravitropism in flowering plant roots. In this system, the primary site of gravity sensing within the root cap is physically separated from the site of curvature response at the elongation zone. Gravity sensing involves the sedimentation of starch-filled plastids (statoliths) within the columella cells of the root cap (the statocytes), which triggers a relocalization of plasma membrane-associated PIN auxin efflux facilitators to the lower side of the cell. This process is associated with the recruitment of RLD regulators of vesicular trafficking to the lower membrane by LAZY proteins. PIN relocalization leads to the formation of a lateral gradient of auxin across the root cap. Upon transmission to the elongation zone, this auxin gradient triggers a downward curvature. We review the molecular mechanisms that control this process in primary roots and discuss recent insights into the regulation of oblique growth in lateral roots and its impact on root-system architecture, soil exploration and plant adaptation to stressful environments.

摘要

根通常向下生长到土壤中,在那里它们固定植物并吸收植物生长和发育所需的水分和养分。虽然主根通常垂直向下生长,但侧根往往遵循重力设定点角度,以便它们探索周围环境。这些反应可以通过发育和环境线索进行调节。本综述讨论了开花植物根中控制根向地性的分子机制。在这个系统中,根冠内重力感知的主要部位与伸长区的弯曲反应部位在物理上是分开的。重力感知涉及根冠(平衡细胞)中柱细胞内充满淀粉的质体(平衡石)的沉降,这会触发质膜相关PIN生长素外排促进剂重新定位到细胞的下侧。这个过程与由LAZY蛋白将囊泡运输的RLD调节因子招募到下侧膜有关。PIN重新定位导致生长素在根冠上形成横向梯度。一旦传递到伸长区,这种生长素梯度就会触发向下弯曲。我们综述了控制主根这一过程的分子机制,并讨论了对侧根倾斜生长调节及其对根系结构、土壤探索和植物适应胁迫环境影响的最新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0ec/7601833/01624a96a960/plants-09-01290-g001.jpg

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