Plant gravitropic response.

A Merkys, J Darginaviciene
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Abstract

The gravitropic response of plants to a change in the gravity vector may be divided. in the phase of induction and expression. During the induction phase the amyloplasts, due to their greater density than the cytoplasmic density, shift their position in less than a minute. During this shift there is an interaction with the endoplasmic reticulum, although a role of actin-like proteins of the cytoskeleton may also be involved in this process. The endoplasmatic reticulum maintains a store of sequestered calcium through the action of an ATP-dependent calcium uptake mediated by the Ca2+, Mg(2+)-ATPase system present in the membrane of this organelle. The interaction of the amyloplast with the endoplasmic reticulum leads to the release of free calcium ions from the endoplasmic store. The increased free Ca2+ level in the cytoplasm may modify the activities of certain enzymes and receptor proteins. The gravitropic induction phase is completed when the lateral polarization of the tissues has taken place. These tissues contain information about changes in direction of the IAA transport system and in competition of the IAA-receptor system for the phytohormone. This information is fixed in "memory" and its expression is achieved when the lateral gradient of IAA concentration and of the activity of the IAA-receptor protein complexes is formed in the horizontally oriented plant organ. Flows of IAA and calcium ions in opposite directions may lead to the expression of laterally differentiated growth.

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植物向地性响应。
植物对重力矢量变化的向地性响应可以划分。在诱导和表达阶段。在诱导阶段,由于淀粉体的密度大于细胞质密度,淀粉体在不到一分钟的时间内改变了它们的位置。在这一转变过程中,与内质网相互作用,尽管细胞骨架的肌动蛋白样蛋白也可能参与这一过程。内质网通过atp依赖性钙摄取的作用来维持隔离钙的储存,该摄取由该细胞器膜上存在的Ca2+, Mg(2+)- atp酶系统介导。淀粉体与内质网的相互作用导致游离钙离子从内质网中释放出来。细胞质中游离Ca2+水平的升高可能会改变某些酶和受体蛋白的活性。当组织的侧向极化发生时,向地诱导阶段完成。这些组织包含有关IAA运输系统方向变化和IAA受体系统对植物激素竞争的信息。这一信息被固定在“记忆”中,当IAA浓度和IAA受体蛋白复合物的活性在水平取向的植物器官中形成横向梯度时,它的表达就实现了。IAA和钙离子的反向流动可能导致侧分化生长的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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