Zellenlehre, Universität Heidelberg, D-6900, Heidelberg, FRG.
Biol Trace Elem Res. 1987 Aug;13(1):135-42. doi: 10.1007/BF02796627.
Pollen tubes ofLilium longiflorum were treated for 10-30 min with 10(-5) M CoCl2, which binds to calcium channels in the plasma membrane and blocks them. Cobalt analyses were performed with the Heidelberg proton microprobe, using 3 MeV protons, a beam current of about 200 pA, and a spot size of 3×5 μm(2). X-ray spectra revealed that coblat has much higher concentrations in the cell than in the surrounding dried medium. The line scans, taken along the longitudinal cell axis in 1-μm steps, showed a cobalt gradient similar to the calcium gradient of the same cell. Based on our findings, we can conclude that neither do the cobalt signals come from the cell wall nor is the cobalt exclusively bound to the intracellular calcium-binding sites. There-fore, the present results suggest a polar distribution in calcium channels in the plasma membrane of pollen tubes.
百合花粉管先用 10(-5) M CoCl2 处理 10-30 分钟,CoCl2 可与质膜上的钙离子通道结合并阻断它们。使用海德堡质子探针进行钴分析,质子能量为 3 MeV,束流约为 200 pA,光斑尺寸为 3×5 μm(2)。X 射线能谱显示,钴在细胞内的浓度明显高于周围干燥培养基中的浓度。沿着细胞的纵轴以 1μm 的步长进行的线扫描显示,钴的浓度梯度与同一细胞内钙离子的浓度梯度相似。基于我们的发现,我们可以得出结论,钴信号既不是来自细胞壁,也不是专门与细胞内的钙结合位点结合。因此,目前的结果表明花粉管质膜中的钙离子通道呈极性分布。