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Uptake of Bicarbonate Ion in Darkness by Isolated Chloroplast Envelope Membranes and Intact Chloroplasts of Spinach

机译:孤立的叶绿体包膜和完整的菠菜叶绿体在黑暗中吸收碳酸氢根离子

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摘要

Bicarbonate uptake by isolated chloroplast envelope membranes and intact chloroplasts of spinach (Spinacia oleracea L. var. Viroflay) in darkness exhibited a similar dependency upon temperature, pH, time, and concentrations of isolated or attached envelope membranes. This similarity in uptake properties demonstrates the usefulness of the envelope membranes for the study of chloroplast permeability. Maximal rates for dark HCO3- uptake by isolated envelope membranes and intact chloroplasts were more than sufficient to account for the maximal rates of photosynthetic CO2 fixation observed with intact chloroplasts. The active species involved in the uptake process was found to be HCO3- and not CO2. The significance of HCO3- uptake and its relationship to carbonic anhydrase and ribulose diphosphate carboxylase is discussed. Conditions for maximal HCO3- uptake in darkness by intact chloroplasts were found to be similar to those required for maximal photosynthetic CO2 fixation, suggesting that HCO3- uptake by the envelope membrane may regulate photosynthetic CO2 fixation.
机译:在黑暗中,分离的叶绿体包膜和菠菜完整叶绿体(Spinacia oleracea L. var。Viroflay)吸收的碳酸氢盐对温度,pH,时间和分离或附着的包膜的浓度具有相似的依赖性。吸收特性的这种相似性证明了包膜对叶绿体渗透性研究的有用性。隔离的包膜和完整叶绿体对深色HCO3-吸收的最大速率足以说明完整叶绿体观察到的光合作用CO2固定的最大速率。发现吸收过程中涉及的活性物质是HCO3-,而不是CO2。讨论了HCO3-吸收的意义及其与碳酸酐酶和核糖二磷酸羧化酶的关系。发现在黑暗中完整叶绿体最大吸收HCO3-的条件与最大光合作用CO2固定所需的条件相似,这表明包膜膜吸收HCO3-可能会调节光合CO2固定。

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  • 作者

    Poincelot, Raymond P.;

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  • 年度 1974
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  • 正文语种 en
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