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光照强度对荚膜红假单胞菌膜分化的影响。

Effects of light intensity on membrane differentiation in Rhodopseudomonas capsulata.

作者信息

Schumacher A, Drews G

出版信息

Biochim Biophys Acta. 1979 Sep 11;547(3):417-28. doi: 10.1016/0005-2728(79)90022-7.

Abstract

Cells of Rhodopseudomonas capsulata, strain 37b4, leu-, precultivated anaerobically under low light intensity, were exposed to high light intensity (2000 W.m-2). The cells grew with a mass doubling time of 3 h. The synthesis of bacteriochlorophyll (BChl) began after two doublings of cell mass. Reaction center and light-harvesting BChl I (B-875) were the main constituents of the photosynthetic apparatus incorporated into the membrane. The size of the photosynthetic unit (total BChl/reaction center) decreased and light-harvesting BChl I became the dominating BChl species. Concomitant with the appearance of the different spectral forms of BChl the respective proteins were incorporated into the membrane, i.e. the three reaction center polypeptides, the polypeptide associated with light-harvesting BChl I, the two polypeptides associated with BChl II. A polypeptide of an apparent molecular weight of 45 000 was also incorporated. A lowering of the light intensity to 7 W.m-2 resulted in a lag phase of growth for 6 h. Afterwards, the time for doubling of cell mass was 11 h. The concentration of all three BChl complexes (reaction center, light-harvesting BChl I and II complexes)/cell and per membrane protein increased immediately. Also the size of the photosynthetic unit and the amount of intracytoplasmic membranes/cell increased. The activities of photophosphorylation, succinate dehydrogenase, NADH dehydrogenase and NADH oxidation (respiratory chain)/membrane protein are higher in membrane preparations isolated from cells grown at high light intensities than in such preparations from cells grown at low light intensities.

摘要

荚膜红假单胞菌37b4菌株(亮氨酸营养缺陷型)的细胞在低光照强度下厌氧预培养后,暴露于高光强度(2000 W·m⁻²)下。细胞以3小时的质量倍增时间生长。细菌叶绿素(BChl)的合成在细胞质量倍增两次后开始。反应中心和捕光BChl I(B - 875)是整合到膜中的光合装置的主要成分。光合单位的大小(总BChl/反应中心)减小,捕光BChl I成为主要的BChl种类。伴随着BChl不同光谱形式的出现,相应的蛋白质被整合到膜中,即三种反应中心多肽、与捕光BChl I相关的多肽、与BChl II相关的两种多肽。一种表观分子量为45000的多肽也被整合。将光照强度降低到7 W·m⁻²导致6小时的生长滞后期。此后,细胞质量倍增时间为11小时。所有三种BChl复合物(反应中心、捕光BChl I和II复合物)/细胞和每膜蛋白的浓度立即增加。光合单位的大小和胞内膜/细胞的数量也增加。从高光强度下生长的细胞中分离的膜制剂中,光磷酸化、琥珀酸脱氢酶、NADH脱氢酶和NADH氧化(呼吸链)/膜蛋白的活性高于从低光强度下生长的细胞中分离的此类制剂。

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