Eremin Alexey, Bulychev Alexander, Krupenina Natalia A, Mair Thomas, Hauser Marcus J B, Stannarius Ralf, Müller Stefan C, Rubin Andrei B
Otto-von-Guericke-Universität, Institute of Experimental Physics, Universitätsplatz 2, 39016, Magdeburg, Germany.
Photochem Photobiol Sci. 2007 Jan;6(1):103-9. doi: 10.1039/b607602e. Epub 2006 Nov 24.
The influence of cell excitation and external calcium level on the dynamics of light-induced pH bands along the length of Chara corallina cells is studied in the present paper. Generation of an action potential (AP) transiently quenched these pH patterns, which was more pronounced at 0.05-0.1 mM Ca2+ than at higher concentrations of Ca2+ (0.6-2 mM) in the medium. After transient smoothing of the pH bands, some alkaline peaks reemerged at slightly shifted positions in media with low Ca2+ concentrations, while at high Ca2+ concentrations, the alkaline spots reappeared exactly at their initial positions. This Ca2+ dependency has been revealed by both digital imaging and pH microelectrodes. The stabilizing effect of external Ca2+ on the locations of recovering alkaline peaks is supposedly due to formation of a physically heterogeneous environment around the cell owing to precipitation of CaCO3 in the alkaline zones at high Ca2+ during illumination. The elevation of local pH by dissolving CaCO3 facilitates the reappearance of alkaline spots at their initial locations after temporal suppression caused by cell excitation. At low Ca2+ concentrations, when the solubility product of CaCO3 is not attained, the alkaline peaks are not stabilized by CaCO3 dissolution and may appear at random locations.
本文研究了细胞兴奋和外部钙水平对轮藻细胞长度上光诱导pH带动态变化的影响。动作电位(AP)的产生会短暂淬灭这些pH模式,在培养基中0.05 - 0.1 mM Ca2+时比在较高Ca2+浓度(0.6 - 2 mM)时更明显。在pH带短暂平滑后,在低Ca2+浓度的培养基中,一些碱性峰在略微偏移的位置重新出现,而在高Ca2+浓度下,碱性斑点恰好在其初始位置重新出现。这种Ca2+依赖性已通过数字成像和pH微电极揭示。外部Ca2+对恢复的碱性峰位置的稳定作用据推测是由于在光照期间高Ca2+条件下碱性区域中CaCO3沉淀导致细胞周围形成了物理上异质的环境。通过溶解CaCO3提高局部pH值有助于在细胞兴奋引起的暂时抑制后碱性斑点在其初始位置重新出现。在低Ca2+浓度下,当未达到CaCO3的溶度积时,碱性峰不会因CaCO3溶解而稳定,可能会出现在随机位置。