首页> 美国卫生研究院文献>The Plant Cell >Pollen Tube Growth and the Intracellular Cytosolic Calcium Gradient Oscillate in Phase while Extracellular Calcium Influx Is Delayed.
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Pollen Tube Growth and the Intracellular Cytosolic Calcium Gradient Oscillate in Phase while Extracellular Calcium Influx Is Delayed.

机译:花粉管生长和细胞内胞浆钙梯度振荡而细胞外钙流入延迟。

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摘要

Ratio images of cytosolic Ca2+ (Ca2+i) in growing, fura-2-dextran-loaded Lilium longiflorum pollen tubes taken at 3- to 5-sec intervals showed that the tip-focused [Ca2+]i gradient oscillates with the same period as growth. Similarly, measurement of the extracellular inward current, using a noninvasive ion-selective vibrating probe, indicated that the tip-directed extracellular Ca2+ (Ca2+o) current also oscillates with the same period as growth. Cross-correlation analysis revealed that whereas the [Ca2+]i gradient oscillates in phase with growth, the influx of Ca2+o lags by ~11 sec. Ion influx thus appears to follow growth, with the effect that the rate of growth at a given point determines the magnitude of the ion influx ~11 sec later. To explain the phase delay in the extracellular inward current, there must be a storage of Ca2+ for which we consider two possibilities: either the inward current represents the refilling of intracellular stores (capacitative calcium entry), or it represents the binding of the ion within the cell wall domain.
机译:以3到5秒的间隔拍摄的在生长中的,装有呋喃2-右旋糖酐的百合花粉花粉管中的胞质Ca2 +(Ca2 + i)比率图像显示,尖端聚焦的[Ca2 +] i梯度以与增长。同样,使用非侵入性离子选择性振动探针对细胞外向电流的测量表明,尖端定向的细胞外Ca2 +(Ca2 + o)电流也以与生长相同的周期振荡。互相关分析显示,尽管[Ca2 +] i梯度与生长同步振荡,但Ca2 + o的流入滞后了约11秒。因此,离子流似乎跟随生长,其结果是,在给定点的生长速率在约11秒后决定了离子流的大小。为了解释细胞外向电流的相位延迟,我们必须考虑两种可能性的Ca2 +储存:内向电流代表细胞内储存物的重新填充(电容性钙进入),或者代表内部离子的结合细胞壁域。

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