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叶绿体中激发能分布的镁离子调节对捕光色素-蛋白复合体的需求

Requirement of the light-harvesting pigment.protein complex for magnesium ion regulation of excitation energy distribution in chloroplasts.

作者信息

Lieberman J R, Bose S, Arntzen C J

出版信息

Biochim Biophys Acta. 1978 Jun 8;502(3):417-29. doi: 10.1016/0005-2728(78)90075-0.

Abstract

Cation regulation of excitation energy distribution was examined in chloroplasts isolated from (a) pea seedlings, grown in intermittent illumination, which contain no light-harvesting complex, (b) a barley mutant which is deficient in the major polypeptide component of the light-harvesting complex, and (c) a soybean mutant which contains a reduced amount of light-harvesting complex. It was found that: (1) Mg2+-induced increase in Photosystem II fluorescence at room temperature is small in the chloroplasts of the soybean mutant, smaller in the barley mutant, and almost absent in the light-harvesting complex-less chloroplasts of pea as compared to their respective controls. (2) Mg2+-induced increase in the F685/F730 emission peak ratio at 77 K is not detected in the isolated chloroplasts of the intermittent light-grown pea and the barley mutant. (3) Pre-illumination induced State 1-State 2 and adaptation in vivo is absent in the barley mutant and is less pronounced in the soybean mutant as compared to their respective controls. (4) Increase of slow fluorescence decay upon addition of Mg2+ observed in control chloroplasts was not detected in chloroplasts of intermittent-light grown peas. These results confirm earlier conclusions (Armond, P.A., Arntzen, C.J., Briantais, J.M. and Vernotte, C. (1976) Arch. Biochem. Biophys. 175, 54--63; Davis, D.J., Armond, P.A., Gross, E.L. and Arntzen, C.J. (1976) Arch. Biochem. Biophys. 175, 64--70) that light-harvesting complex is required for the Mg2+-induced regulation of the excitation energy distribution between Photosystems I and II. The characteristic P-S decay and I-D dip of the in vivo fluorescence inductions (Kautsky effect) were not significantly altered in the light-harvesting complex-less and the light-harvesting complex-deficient chloroplasts as compared to their respective controls. These results indicate that light-harvesting complex is not obligatorily required to observe the P-S decay or the I-D dip.

摘要

研究了阳离子对激发能分布的调节作用,所用叶绿体分别来自:(a) 在间歇光照下生长的豌豆幼苗,其不含捕光复合体;(b) 一种大麦突变体,其缺乏捕光复合体的主要多肽成分;(c) 一种大豆突变体,其含有的捕光复合体数量减少。结果发现:(1) 与各自的对照相比,室温下Mg2+诱导的大豆突变体叶绿体中光系统II荧光增加较小,大麦突变体中更小,而在豌豆不含捕光复合体的叶绿体中几乎没有。(2) 在77 K下,Mg2+诱导的F685/F730发射峰比值增加在间歇光照下生长的豌豆和大麦突变体的分离叶绿体中未检测到。(3) 预照光诱导的体内状态1-状态2转换和适应在大麦突变体中不存在,与各自的对照相比,在大豆突变体中也不明显。(4) 在间歇光照下生长的豌豆叶绿体中未检测到对照叶绿体中添加Mg2+后观察到的慢荧光衰减增加。这些结果证实了早期的结论(Armond, P.A., Arntzen, C.J., Briantais, J.M.和Vernotte, C. (1976) Arch. Biochem. Biophys. 175, 54 - 63;Davis, D.J., Armond, P.A., Gross, E.L.和Arntzen, C.J. (1976) Arch. Biochem. Biophys. 175, 64 - 70),即捕光复合体是Mg2+诱导的光系统I和光系统II之间激发能分布调节所必需的。与各自的对照相比,在不含捕光复合体和捕光复合体缺陷的叶绿体中,体内荧光诱导(考茨基效应)的特征性P-S衰减和I-D下降没有显著改变。这些结果表明,观察P-S衰减或I-D下降并非必须有捕光复合体。

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