Instituto Gulbenkian de Ciência, Oeiras, Portugal.
J Microsc. 2012 Jul;247(1):106-18. doi: 10.1111/j.1365-2818.2012.03628.x.
The structure, distribution and possible roles of mitochondria in growing pollen tubes is reviewed. Diverse microscopical methods have been applied to the analysis of mitochondria in pollen, with a predominance in recent years on vital fluorescent probes. We review the application of different dyes to pollen tubes, with a special emphasis on the ratiometric dye JC-1. Morphometric data shows a concentration of mitochondria in the subapical area of pollen tubes, apparently with more frequency of mitochondria with membrane depolarization when compared with the rest of the tube. Remarkably, data from various species and from transcriptomics indicates that different species may have different respiratory adaptations, ranging from high oxygen consumption in the early steps of germination, to energy production and growth on almost anoxic conditions. Various studies also showed that the pollen of many species is refractory to some common respiration inhibitors, including the ones from the alternative pathway. Given the conspicuous distribution and apparent subapical accumulation of mitochondria, we speculate on their functional relationship with known apical ion gradients that seem to characterize pollen tubes.
本文回顾了线粒体在花粉管生长中的结构、分布和可能的作用。人们已经应用了多种显微镜方法来分析花粉中的线粒体,近年来,生命荧光探针的应用尤为突出。我们回顾了不同染料在花粉管中的应用,特别强调了比率染料 JC-1。形态计量学数据显示,线粒体在花粉管的亚顶区集中,与管的其余部分相比,显然具有更多的膜去极化线粒体的频率。值得注意的是,来自不同物种的转录组学数据表明,不同物种可能具有不同的呼吸适应,范围从萌发早期的高耗氧量到几乎无氧条件下的能量产生和生长。各种研究还表明,许多物种的花粉对一些常见的呼吸抑制剂具有抗性,包括来自替代途径的抑制剂。鉴于线粒体明显的分布和明显的亚顶区聚集,我们推测它们与已知的顶端离子梯度之间存在功能关系,这些梯度似乎是花粉管的特征。