Centre for Forest Biology, University of Victoria, P.O. Box 3020, Victoria, British Columbia, Canada, V8W 3N5.
Am J Bot. 1999 Feb;86(2):190-7.
Sacci of conifer pollen do not function primarily to increase the efficiency of wind pollination as is widely thought. Rather, they are bladders and cause pollen to float upwards in a liquid drop into the ovules. This observation is seemingly unsupported in the case of oriental spruce (Picea orientalis (L.) Link), which has saccate pollen. Ovulate cones are pendant at the time of pollination, which requires that pollen sink into the ovules. Pollen of oriental spruce floats at first but within 1-2 min sinks into the ovule. As sinking does not occur in saccate pollen of other Pinaceae, a variety of techniques was used to determine anatomical differences leading to this uncharacteristic tendency. Light, scanning electron, and confocal microscopy of the pollen surface yielded no significant appearing difference between pollen of oriental spruce and white spruce. However, transmission electron microscopy of freeze-fixed/freeze-substituted hydrated pollen revealed that the ektexine of oriental spruce pollen sacci is porous compared to that of white spruce. Confocal microscopy allowed examination of pollen hydration dynamics. Water enters pollen at the distal pole between sacci, and resulting rapid expansion of the tube cell forces air out of the saccate space. White spruce pollen remains buoyant because of enclosed air pockets in the saccus ektexine. Evolutionary change in pollen wall anatomy with resultant loss of saccus function is correlated with a change in ovulate strobilus orientation at pollination in oriental spruce. A suite of characters interact in the conifer pollination mechanism, and concerted change in these characters may lead to speciation.
松属植物花粉囊的功能并非如人们普遍认为的那样,主要是提高风媒传粉的效率。相反,它们是膀胱,会将花粉包裹在液滴中向上漂浮,进入胚珠。这一观察结果在东方云杉(Picea orientalis (L.) Link)中似乎没有得到支持,因为东方云杉的花粉囊是囊状的。在传粉时,雌球果是下垂的,这要求花粉沉入胚珠中。东方云杉的花粉最初会漂浮,但在 1-2 分钟内会沉入胚珠。由于其他松科植物的囊状花粉不会下沉,因此采用了各种技术来确定导致这种异常倾向的解剖学差异。对花粉表面的光镜、扫描电镜和共聚焦显微镜观察没有发现东方云杉花粉和白云杉花粉之间有明显的差异。然而,对冷冻固定/冷冻置换水合花粉的透射电镜观察显示,东方云杉花粉囊的外壁多孔,而白云杉的则没有。共聚焦显微镜允许检查花粉水合动力学。水从囊之间的远端进入花粉,管细胞的快速膨胀将空气从囊状空间挤出。由于囊外壁的气腔,白云杉花粉仍然保持浮力。花粉壁解剖结构的进化变化导致花粉囊功能丧失,与东方云杉传粉时雌球果花序方向的变化有关。在针叶植物的传粉机制中,一系列特征相互作用,这些特征的协同变化可能导致物种形成。