Zinkl G M, Zwiebel B I, Grier D G, Preuss D
Department of Molecular Genetics and Cell Biology, The James Franck Institute, The University of Chicago, Chicago, Illinois 60637, USA.
Development. 1999 Dec;126(23):5431-40. doi: 10.1242/dev.126.23.5431.
To investigate the nature and role of cell adhesion in plants, we analyzed the initial step of pollination in Arabidopsis: the binding of pollen grains to female stigma cells. Here we show this interaction occurs within seconds of pollination. Because it takes place prior to pollen hydration, it also requires adhesion molecules that can act in a virtually dry environment. We developed assays that monitored adhesion of populations of pollen grains and individual cells. Adhesion between pollen and stigma cells is highly selective - Arabidopsis pollen binds with high affinity to Arabidopsis stigmas, while pollen from other species fails to adhere. Initial binding is independent of the extracellular pollen coat (tryphine), indicating that adhesion molecules reside elsewhere on the pollen surface, most likely within the exine walls. Immediately after pollination, the stigma surface becomes altered at the interface, acquiring a pattern that interlocks with the exine; this pattern is evident only with pollen from Arabidopsis and its close relatives. Purified exine fragments bind to stigma cells, and biochemical analyses indicate that this specific, rapid and anhydrous adhesion event is mediated by lipophilic interactions.
为了研究植物中细胞黏附的性质和作用,我们分析了拟南芥授粉的初始步骤:花粉粒与雌蕊柱头细胞的结合。我们在此表明,这种相互作用在授粉后数秒内发生。由于它发生在花粉水合之前,因此还需要能够在几乎干燥的环境中起作用的黏附分子。我们开发了监测花粉粒群体和单个细胞黏附的试验。花粉与柱头细胞之间的黏附具有高度选择性——拟南芥花粉与拟南芥柱头具有高亲和力结合,而来自其他物种的花粉则无法黏附。初始结合不依赖于细胞外花粉壁(花粉鞘),这表明黏附分子位于花粉表面的其他位置,最有可能在花粉外壁内。授粉后立即,柱头表面在界面处发生改变,形成与花粉外壁互锁的图案;这种图案仅在来自拟南芥及其近缘种的花粉中明显。纯化的花粉外壁片段与柱头细胞结合,生化分析表明,这种特异性、快速且无水的黏附事件是由亲脂性相互作用介导的。