首页> 美国卫生研究院文献>Biochemical Journal >Evidence that circularly dichroic chlorophyll forms a-682 and a-710 are oriented at right angles to the thylakoid membranes of whole chloroplasts and that the circular dichroism is light-dependent.
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Evidence that circularly dichroic chlorophyll forms a-682 and a-710 are oriented at right angles to the thylakoid membranes of whole chloroplasts and that the circular dichroism is light-dependent.

机译:圆形二色性叶绿素形成a-682和a-710的证据与整个叶绿体的类囊体膜成直角并且圆形二色性是光依赖性的。

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摘要

Chloroplasts from the pea (Pisum sativum L.) suspended in iso-osmotic buffered medium were oriented by flow in specially constructed cuvettes and examined for circular dichroism (c.d.). In one cuvette the flow was transverse to the direction of the light-path, but the other cuvette was designed so that flow and the light-path were coaxial. The induced orientation is such that the chloroplasts appear to move edgewise. C.d. was maximum when the light-path lay in the plane of the chloroplast disc. The intense c.d. of intact chloroplasts ascribed by Gregory & Raps [Biochem. J. (1974) 142, 193-201] to bulk chlorophyll a was found to contain two components, one the split-exciton type centred at 682nm and the other a simple maximum at 700-710 nm. The chlorophyll a-710 form was distinguished by its greater dependence on chloroplast orientation. The preferred direction of the transition moment in both chlorophyll forms was at right angles to the plane of the chloroplast, that is, at right angles to the plane of the thylakoids. This is in conflict with several reports based on polarization of fluorescence. It is suggested that the present effect is due to thylakoid-thylakoid interaction. Evidence for this is the reversible diminution in the c.d. signal caused by illumination in the presence of electron-transport reagents. It is argued that the c.d. is an indicator of chlorophyll movement, or changes in the thylakoid-thylakoid distance, possibly related to ion movement, affecting energy transfer between photosynthetic units.
机译:将悬浮在等渗缓冲液中的豌豆(Pisum sativum L.)的叶绿体在特制的比色杯中进行流动定向,并检查其圆二色性(c.d.)。在一个比色皿中,流量垂直于光路的方向,但另一只比色皿的设计使其流动和光路是同轴的。诱导的取向使得叶绿体似乎向边缘移动。光盘。当光路位于叶绿体盘的平面中时,最大。强烈的c.d. Gregory&Raps归因于完整叶绿体的制备[Biochem。 J.(1974)142,193-201]发现大量叶绿素a包含两个成分,一个是在682nm处集中的激子类型,另一个是在700-710 nm处一个简单的最大值。叶绿素a-710形式的特征在于其对叶绿体取向的依赖性更大。在两种叶绿素形式中,过渡力矩的首选方向均与叶绿体平面成直角,即与类囊体平面成直角。这与基于荧光偏振的一些报道相冲突。提示当前的作用是由于类囊体-类囊体相互作用。证据表明,美元的可逆性下降。在电子传输试剂存在下由照明引起的信号。有人认为c.d.是叶绿素运动或类囊体-类囊体距离变化的指示,可能与离子运动有关,影响光合作用单元之间的能量转移。

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