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从 P700 光氧化动力学计算绝对光系统 I 吸收截面。

Calculation of absolute photosystem I absorption cross-sections from P700 photo-oxidation kinetics.

机构信息

Section of Plant Biology, Cornell University, 14853-5908, Ithaca, NY, USA.

出版信息

Photosynth Res. 1991 Jul;29(1):23-35. doi: 10.1007/BF00035203.

Abstract

A procedure is described which permits determination of the absolute absorption cross-section of a photosynthetic unit from the kinetics of reaction center photo-oxidation under weak, continuous actinic illumination. The method was first tested on a simple model compound of known absorption cross-section. We then applied the technique to absorption cross-section and functional antenna size measurements in photosystem I (PS I). A kinetic model is presented that can be used to fit P700 photo-oxidation measurements and extract the effective photochemical rate constant. The procedure is shown to properly correct for sample scattering and for the presence of heterogeneous absorbers (pigments not functionally coupled to P700). The relevance of these corrections to comparisons of antenna size using techniques that measure 'relative' absorption cross-sections is discussed. Measurements on pea thylakoids in the presence and absence of 5 mM MgCl2 show a 45% increase in PS I absorption cross-section in unstacked thylakoids. Analysis of detergent-isolated 'native' PS I preparations (200 chlorophyll a+b/P700) clearly indicate that the preparation contains a broad distribution of antenna sizes. Finally, we confirm that Chlamydomonas reinhardtii strain LM3-A4d contains a PS I core antenna complex which binds only ∼60 chlorophyll a/P700, about half the functional size of the wild type complex. Limitations associated with calculation of functional antenna size from cross-section measurements are also discussed.

摘要

介绍了一种方法,可通过弱连续激发光下反应中心光氧化的动力学来确定光合单位的绝对吸收截面。该方法首先在具有已知吸收截面的简单模型化合物上进行了测试。然后,我们将该技术应用于 PS I 中吸收截面和功能天线大小的测量。提出了一个动力学模型,可用于拟合 P700 光氧化测量值并提取有效光化学速率常数。该方法被证明可以正确校正样品散射和异质吸收剂(与 P700 没有功能偶联的色素)的存在。讨论了这些校正对使用测量“相对”吸收截面的技术比较天线大小的相关性。在存在和不存在 5 mM MgCl2 的情况下对豌豆类囊体的测量表明,在未堆叠的类囊体中 PS I 的吸收截面增加了 45%。对去污剂分离的“天然” PS I 制剂(200 叶绿素 a+b/P700)的分析清楚地表明,该制剂包含天线大小的广泛分布。最后,我们证实莱茵衣藻 LM3-A4d 株含有仅结合约 60 个叶绿素 a/P700 的 PS I 核心天线复合物,约为野生型复合物功能大小的一半。还讨论了从截面测量计算功能天线大小的限制。

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