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菠菜叶绿体的时间分辨荧光光谱

Time-resolved fluorescence spectroscopy of spinach chloroplast.

作者信息

Yu W, Pellegrino F, Alfano R R

出版信息

Biochim Biophys Acta. 1977 Apr 11;460(1):171-81. doi: 10.1016/0005-2728(77)90164-5.

Abstract

Picosecond fluorescent kinetics and time-resolved spectra of spinach chloroplast were measured at room temperature and low temperatures. The measurement is conducted with 530 nm excitation at an average intensity of 2-10(14) photons/cm2, pluse and at a pulse separation of 6 ns for the 100 pulses used. The 685 nm fluorescent kinetics was found to decay with two components, a fast component with a 56 ps lifetime, and a slow component with a 220 ps lifetime. The 730 nm fluorescent kinetics at room temperature is a single exponential decay with a 100 ps lifetime. The 730 nm fluorescence lifetime was found to increase by a factor of 6 when the temperature was lowered from room temperature to 90 K, while the 685 and 695 nm fluorescent kinetics were unchanged. The time-resolved spectra data obtained within 10 ps after excitation is consistent with the kinetic data reported here. A two-level fluorescence scheme is proposed to explain the kinetics. The effect of excitation with high light intensity and multiple pulses is discussed.

摘要

在室温及低温下测量了菠菜叶绿体的皮秒荧光动力学和时间分辨光谱。测量是在平均强度为2 - 10(14) 光子/平方厘米、脉冲宽度为6纳秒、共100个脉冲的530纳米激发光下进行的。发现685纳米荧光动力学由两个成分衰减,一个快速成分的寿命为56皮秒,一个慢速成分的寿命为220皮秒。室温下730纳米荧光动力学是单指数衰减,寿命为100皮秒。当温度从室温降至90 K时,730纳米荧光寿命增加了6倍,而685和695纳米荧光动力学保持不变。激发后10皮秒内获得的时间分辨光谱数据与本文报道的动力学数据一致。提出了一种双能级荧光方案来解释动力学。讨论了高光强度和多脉冲激发的影响。

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