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大麦叶片中光系统I反应中心的异质性与基质还原剂的供体有关。

Heterogeneity of Photosystem I reaction centers in barley leaves as related to the donation from stromal reductants.

作者信息

Bukhov N, Carpentier R, Samson G

机构信息

Groupe de Recherche en Energie et Information Biomoléculaires, Université du Québec à Trois-Rivières, Trois-Rivières, Québec, G9A 5H7, Canada,

出版信息

Photosynth Res. 2001;70(3):273-9. doi: 10.1023/A:1014741814581.

Abstract

The light-response curves of P700 oxidation and time-resolved kinetics of P700(+) dark re-reduction were studied in barley leaves using absorbance changes at 820 nm. Leaves were exposed to 45 degrees C and treated with either diuron or diuron plus methyl viologen (MV) to prevent linear electron flow from PS II to PS I and ferredoxin-dependent cyclic electron flow around PS I. Under those conditions, P700(+) could accept electrons solely from soluble stromal reductants. P700 was oxidized under weak far-red light in leaves treated with diuron plus MV, while identical illumination was nearly ineffective in diuron-treated leaves in the absence of MV. When heat-exposed leaves were briefly illuminated with strong far-red light, which completely oxidized P700, the kinetics of P700(+) dark reduction was fitted by a single exponential term with half-time of about 40 ms. However, two first-order kinetic components of electron flow to P700(+) (fast and slow) were found after prolonged leaf irradiation. The light-induced modulation of the kinetics of P700(+) dark reduction was reversed following dark adaptation. The fast component (half time of 80-90 ms) was 1.5 larger than the slow one (half time of about 1 s). No kinetic competition occurred between two pathways of electron donation to P700(+) from stromal reductants. This suggests the presence of two different populations of PS I.

摘要

利用820nm处的吸光度变化,研究了大麦叶片中P700氧化的光响应曲线以及P700(+)暗再还原的时间分辨动力学。将叶片置于45℃下,用敌草隆或敌草隆加甲基紫精(MV)处理,以阻止从PS II到PS I的线性电子流以及围绕PS I的铁氧还蛋白依赖性循环电子流。在这些条件下,P700(+)只能从可溶性基质还原剂接受电子。在用敌草隆加MV处理的叶片中,P700在弱远红光下被氧化,而在没有MV的情况下,相同的光照对敌草隆处理的叶片几乎无效。当热暴露的叶片用强远红光短暂照射时,P700被完全氧化,P700(+)暗还原的动力学由一个半衰期约为40ms的单指数项拟合。然而,在叶片长时间照射后,发现有两个流向P700(+)的电子流的一级动力学成分(快和慢)。暗适应后,光诱导的P700(+)暗还原动力学的调制被逆转。快成分(半衰期为80 - 90ms)比慢成分(半衰期约为1s)大1.5倍。从基质还原剂向P700(+)的两条电子供体途径之间没有发生动力学竞争。这表明存在两种不同的PS I群体。

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