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单个花粉管中顶端小泡积累的动态变化与生长速率相关。

Dynamics of the apical vesicle accumulation and the rate of growth are related in individual pollen tubes.

作者信息

Parton R M, Fischer-Parton S, Watahiki M K, Trewavas A J

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, UK.

出版信息

J Cell Sci. 2001 Jul;114(Pt 14):2685-95. doi: 10.1242/jcs.114.14.2685.

Abstract

Regulated secretory vesicle delivery, vesicle fusion and rapid membrane recycling are all contentious issues with respect to tip growth in plant, fungal and animal cells. To examine the organisation and dynamics of membrane movements at the growing pollen tube apex and address the question of their relationship to growth, we have used the membrane stain FM4-64 both as a structural marker and as a quantitative assay. Labelling of living Lilium Longiflorum pollen tubes by FM4-64 resulted in a distinct staining pattern in the tube apex, which corresponds spatially to the previously identified cone-shaped 'apical clear zone' containing secretory vesicles. Dye uptake could be inhibited by sodium azide and followed a strict temporal sequence from the plasma membrane to a population of small (1-2 microm diameter) discrete internal structures, with subsequent appearance of dye in the apical region and ultimately in vacuolar membranes. Washout of the dye rapidly removed the plasma membrane staining, which was followed by a gradual decline in the apical fluorescence over more than an hour. Injected aqueous FM4-64 solution showed a relatively even distribution within the pollen tube. Association of FM4-64 with apical secretory vesicles was supported by the effects of the inhibitors Brefeldin-A and Cytochalasin-D, which are known to affect the localisation and number of such vesicles, on the FM4-64 staining pattern. Examination of the dynamics of FM4-64 labelling in the pollen tube tip by time-lapse observation, supported by fluorescence-recovery-after-photobleaching (FRAP) analysis, suggested the possibility of distinct pathways of bulk membrane movement both towards and, significantly, away from the apex. Quantitative analysis of FM4-64 distribution in the apex revealed that fluctuations in fluorescence 5 to 10 microm subapically, and to a lesser extent the apical 3 microm, could be related to the periodic oscillation in pollen tube growth rate. This data reveals a quantitative relationship between FM4-64 staining and growth rate within an individual tube.

摘要

在植物、真菌和动物细胞的顶端生长过程中,受调控的分泌囊泡运输、囊泡融合以及快速的膜循环都是存在争议的问题。为了研究生长中的花粉管顶端膜运动的组织和动态,并探讨它们与生长的关系,我们使用膜染料FM4-64作为结构标记和定量分析方法。用FM4-64标记活的麝香百合花粉管,在花粉管顶端产生了独特的染色模式,其在空间上与先前鉴定的含有分泌囊泡的锥形“顶端透明区”相对应。叠氮化钠可抑制染料摄取,并且染料摄取遵循从质膜到一群小的(直径1-2微米)离散内部结构的严格时间顺序,随后染料出现在顶端区域,最终出现在液泡膜中。洗去染料后,质膜染色迅速消失,随后顶端荧光在一个多小时内逐渐下降。注射的FM4-64水溶液在花粉管内显示出相对均匀的分布。抑制剂布雷菲德菌素A和细胞松弛素D已知会影响此类囊泡的定位和数量,它们对FM4-64染色模式的影响支持了FM4-64与顶端分泌囊泡的关联。通过荧光漂白后恢复(FRAP)分析支持的延时观察,研究花粉管顶端FM4-64标记的动态,结果表明存在明显的大量膜向顶端以及显著地从顶端向外移动的途径。对顶端FM4-64分布的定量分析表明,在顶端下方5至10微米处荧光的波动,以及在较小程度上顶端3微米处荧光的波动,可能与花粉管生长速率的周期性振荡有关。这些数据揭示了单个花粉管内FM4-64染色与生长速率之间的定量关系。

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