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细胞器运输、细胞骨架和花粉管生长。

Organelle trafficking, the cytoskeleton, and pollen tube growth.

机构信息

Department of Life Sciences, University of Siena, Siena, 53100, Italy.

出版信息

J Integr Plant Biol. 2015 Jan;57(1):63-78. doi: 10.1111/jipb.12289. Epub 2014 Dec 11.

Abstract

The pollen tube is fundamental for the reproduction of seed plants. Characteristically, it grows relatively quickly and uni-directionally ("polarized growth") to extend the male gametophyte to reach the female gametophyte. The pollen tube forms a channel through which the sperm cells move so that they can reach their targets in the ovule. To grow quickly and directionally, the pollen tube requires an intense movement of organelles and vesicles that allows the cell's contents to be distributed to sustain the growth rate. While the various organelles distribute more or less uniformly within the pollen tube, Golgi-released secretory vesicles accumulate massively at the pollen tube apex, that is, the growing region. This intense movement of organelles and vesicles is dependent on the dynamics of the cytoskeleton, which reorganizes differentially in response to external signals and coordinates membrane trafficking with the growth rate of pollen tubes.

摘要

花粉管对于种子植物的繁殖至关重要。其典型特征是相对快速且单向地(“极性生长”)延伸雄性配子体以到达雌性配子体。花粉管形成一个通道,精子细胞通过该通道移动,以便能够到达胚珠中的目标位置。为了快速且定向生长,花粉管需要细胞器和囊泡的强烈运动,这允许细胞的内容物被分配以维持生长速度。虽然各种细胞器在花粉管内或多或少均匀分布,但高尔基体释放的分泌囊泡在花粉管顶端(即生长区域)大量积累。细胞器和囊泡的这种强烈运动依赖于细胞骨架的动力学,细胞骨架会根据外部信号进行不同的重组,并协调膜运输与花粉管的生长速度。

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