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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Effect of Plasma Membrane Ion Currents on Chlorophyll Fluorescence and Excitation Quenching in Chara Chloroplasts
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Effect of Plasma Membrane Ion Currents on Chlorophyll Fluorescence and Excitation Quenching in Chara Chloroplasts

机译:血浆膜离子电流对<斜晶叶片叶绿素荧光和激发淬火的影响叶绿体

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— Illuminated giant cells of characean algae exhibit membrane excitability as well as the spatial patterns of photosynthesis and transmembrane H~(+)fluxes. The excitation of plasmalemma under these conditions results in the transient degradation of external alkaline and acid zones and inhibits photosynthesis in the alkaline zones. The generation of action potential in the patterned internodes is followed by cell hyperpolarization that peaks in 1 min and lasts up to 15 min. In order to exclude the influence of drifting resting potential on the chloroplast response to plasma membrane excitation, the voltage clamp mode was applied in this work, and chlorophyll fluorescence changes caused by a short depolarizing pulse were monitored. The depolarizing shift of membrane potential under voltage clamp conditions was found to induce a large depression of documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$F_{{ext{m}}}^{{{'}}}$$end{document} chlorophyll fluorescence and photosynthetic activity, provided that inward Ca~(2+)and Cl~(–)currents were triggered and that a steady-state inward H~(+)flux (or OH~(–)efflux) persisted before the application of an electric stimulus. The depolarization-induced ion currents measured in the alkaline and acidic cell regions under light and in darkness were found to differ significantly. The results are consistent with the notion that the massive inward H~(+)flow occurring in the alkaline cell regions under illumination is associated with the acidic shift of cytoplasmic pH. Divergent amplitudes of ionic currents in different cell parts can be partially determined by the presence of numerous plasmalemmal invaginations, charasomes specifically localized in the acid zones, as well as by sharp local changes in external pH in acid zones during the perforation of cell wall with a measuring microelectrode.
机译:- 炭酸藻类的照明巨细胞表现出膜兴奋性以及光合作用的空间模式和跨膜H〜(+)助熔剂。在这些条件下,可激动的激发导致外部碱性和酸区的瞬时降解,并抑制碱性区域的光合作用。图案化间的动作电位的产生之后是细胞超极化,即在1分钟内达到峰值,持续高达15分钟。为了排除漂移静止电位对叶绿体响应对质膜激发的影响,在该工作中施加电压钳位,并监测由短的去极性脉冲引起的叶绿素荧光变化。发现膜电位下的膜电位的去极化偏移诱导大凹陷 DocumentClass [12pt] {minimal} usepackage {ammath} usepackage {isysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy } usepackage {mathrsfs} usepackage {supmeek} setLength { oddsideDemargin} { - 69pt} begin {document} $$ f _ {{ text {m}}} ^ {{{{}} $$ end {Document}叶绿素荧光和光合活性,条件是触发内向Ca〜(2+)和Cl〜( - )电流,并且稳态向内H〜(+)通量(或OH〜( - )Efflux)持续存在在施用电刺激之前。发现在碱性和酸性细胞区域下测量的去极化诱导的离子电流在呈碱性和酸性细胞区域下被发现显着不同。结果与在照明下的碱性细胞区中发生的大规模向内H〜(+)流与细胞质pH的酸性移位有关。不同细胞部件中的离子电流的发散幅度可以通过存在许多质粒造林,特异性定位在酸区的Charasomes,以及在细胞壁穿孔期间通过酸区的外部pH中的局部pH急剧局部变化的情况下测量微电极。

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