首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Growing Pollen Tubes Possess a Constitutive Alkaline Band in the Clear Zone and a Growth-dependent Acidic Tip
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Growing Pollen Tubes Possess a Constitutive Alkaline Band in the Clear Zone and a Growth-dependent Acidic Tip

机译:不断增长的花粉管在透明区具有碱性碱性带并具有与生长有关的酸性尖端

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摘要

Using both the proton selective vibrating electrode to probe the extracellular currents and ratiometric wide-field fluorescence microscopy with the indicator 2′,7′-bis-(2-carboxyethyl)-5-(and-6)-carboxyfluorescein (BCECF)-dextran to image the intracellular pH, we have examined the distribution and activity of protons (H+) associated with pollen tube growth. The intracellular images reveal that lily pollen tubes possess a constitutive alkaline band at the base of the clear zone and an acidic domain at the extreme apex. The extracellular observations, in close agreement, show a proton influx at the extreme apex of the pollen tube and an efflux in the region that corresponds to the position of the alkaline band. The ability to detect the intracellular pH gradient is strongly dependent on the concentration of exogenous buffers in the cytoplasm. Thus, even the indicator dye, if introduced at levels estimated to be of 1.0 μM or greater, will dissipate the gradient, possibly through shuttle buffering. The apical acidic domain correlates closely with the process of growth, and thus may play a direct role, possibly in facilitating vesicle movement and exocytosis. The alkaline band correlates with the position of the reverse fountain streaming at the base of the clear zone, and may participate in the regulation of actin filament formation through the modulation of pH-sensitive actin binding proteins. These studies not only demonstrate that proton gradients exist, but that they may be intimately associated with polarized pollen tube growth.
机译:使用质子选择性振动电极探测细胞外电流,并使用指示剂2',7'-双-(2-羧乙基)-5-(和-6)-羧基荧光素(BCECF)-右旋糖酐进行比例宽视野荧光显微镜为了显示细胞内pH值,我们检查了与花粉管生长相关的质子(H + )的分布和活性。细胞内图像显示,百合花粉管在透明区的底部具有组成性碱性带,在极尖处具有酸性域。紧密一致的细胞外观察显示,质子在花粉管的最高顶点处流入,并且在对应于碱带位置的区域中流出。检测细胞内pH梯度的能力在很大程度上取决于细胞质中外源缓冲液的浓度。因此,即使指示剂染料以估计为1.0μM或更高的水平引入,也可能会通过穿梭缓冲消散梯度。顶端酸性结构域与生长过程密切相关,因此可能起直接作用,可能在促进囊泡运动和胞吐作用中起作用。碱性带与在透明区底部流动的反向润版液的位置相关,并且可以通过调节pH敏感的肌动蛋白结合蛋白来参与肌动蛋白丝形成的调节。这些研究不仅表明存在质子梯度,而且还可能与极化花粉管的生长密切相关。

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