Interacting signal transduction chains in gravity-stimulated maize roots

A. Hahn, R. Firn, H. Edelmann
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引用次数: 12

Abstract

Gravitropism in roots involves at least three signal transduction chains. The first signal transduction chain is sub-cellular and operates within the gravity-perceiving cells in the root apex. The output of this perception system feeds into a second intercellular signal transduction chain (widely considered to involve auxin movement) that links events in the apical regions with the third signal transduction chain that controls cell expansion in the elongating cells. The present study probes the disputed role of ethylene in gravitropism by seeking to identify which parts of the gravitropism cascade are influenced by ethylene action. The results suggest that another signal transduction chain, initiated by mechanical impedance to the root apex, interacts with the early stages of the gravitropism cascade and the effects of ethylene on gravitropism could be mediated by the mechanical impedance sensing and response systems.
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重力刺激下玉米根系的相互作用信号转导链
根的向地性至少涉及三条信号转导链。第一个信号转导链是亚细胞的,在根尖的重力感知细胞内运作。这种感知系统的输出进入第二个细胞间信号转导链(被广泛认为与生长素运动有关),该信号转导链将顶端区域的事件与第三个信号转导链联系起来,该信号转导链控制伸长细胞中的细胞扩张。本研究探讨了乙烯在向重力作用中有争议的作用,试图确定向重力作用级联的哪些部分受到乙烯作用的影响。结果表明,另一条由根端机械阻抗启动的信号转导链与向地性级联的早期阶段相互作用,乙烯对向地性的影响可能通过机械阻抗感知和响应系统介导。
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