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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >ION DYNAMICS AND ITS POSSIBLE ROLE DURING IN VITRO POLLEN GERMINATION AND TUBE GROWTH
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ION DYNAMICS AND ITS POSSIBLE ROLE DURING IN VITRO POLLEN GERMINATION AND TUBE GROWTH

机译:花粉萌发和管生长过程中的离子动力学及其可能的作用

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One of the most interesting aspects of plant fertilization is the growth and orientation of the pollen tube from the stigma to the ovary. Considerable research has been carried out in this field but little is yet known about the mechanisms involved in the growth process. Recent research has been focused on the regulation of molecular events in order to discover the specific genes involved in tube growth. Important results in the biochemical and physiological aspects of molecular regulation have been reported. The following review attempts to cover these aspects. It is primarily based on talks presented by the authors at the 13th International Congress on Sexual Plant Reproduction and is mainly addressed to non-experts in the fields of electrophysiology and ion signalling. We aim to present a general overview of electrical currents, ion dynamics, and ion transporters in pollen, and their possible role during pollen tube germination and growth. Together with results on other tip-growing cells, a general model of pollen tube germination and growth as a self-organizing process is proposed. [References: 100]
机译:植物受精最有趣的方面之一是花粉管从柱头到卵巢的生长和方向。在该领域已经进行了相当多的研究,但是关于生长过程所涉及的机制还知之甚少。最近的研究集中在分子事件的调控上,以发现参与试管生长的特定基因。据报道,在分子调节的生化和生理方面取得了重要成果。以下回顾试图涵盖这些方面。它主要基于作者在第十三届国际有性植物繁殖大会上的演讲,并且主要针对电生理学和离子信号领域的非专家。我们旨在介绍花粉中的电流,离子动力学和离子转运蛋白的一般概述,以及它们在花粉管萌发和生长中的可能作用。连同在其他尖端生长细胞上的结果一起,提出了作为自组织过程的花粉管萌发和生长的一般模型。 [参考:100]

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