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Characteristics of Fluorescence and Delayed Light Emission from Green Photosynthetic Bacteria and Algae

机译:绿色光合细菌和藻类的荧光特性和延迟发光特性

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摘要

Green photosynthetic bacteria exhibit variations in the intensity of their fluorescence during illumination. The initial intensity of fluorescence, measured at the onset of illumination, has a spectrum in which the major pigment Chlorobium chlorophyll predominates. The minor pigment bacteriochlorophyll predominates in the spectrum of the time-varying part of the fluorescence. The spectrum of delayed light emission is identical to that of the time-varying fluorescence. The variations in fluorescence also resemble the delayed light in their kinetics and in their dependence on exciting light intensity. Similar results are obtained for the kinetics of prompt and delayed light emission in the algae Chlorella and Anacystis. These findings raise the possibility that the variations in fluorescence actually represent a fast component of delayed light emission, of intensity comparable to the intensity of fluorescence. In Anacystis there is an outburst of light emission that develops after the exciting light has been turned off, reaching a maximum intensity after 1 to 3 seconds. This emitted light has the spectrum of chlorophyll fluorescence. It appears to be a novel example of bioluminescence with singlet excited chlorophyll as the emitter.
机译:绿色光合细菌在光照过程中其荧光强度发生变化。在照明开始时测得的荧光初始强度具有一个光谱,其中主要色素叶绿素占主导地位。在荧光的时变部分的光谱中,次要的色素细菌叶绿素占主导。延迟发光的光谱与时变荧光的光谱相同。荧光的变化在动力学和对激发光强度的依赖性方面也类似于延迟光。对于藻类小球藻和猕猴藻中的及时和延迟发光的动力学,获得了相似的结果。这些发现增加了荧光的变化实际上代表延迟发光的快速成分的可能性,其强度与荧光的强度可比。在Anacystis中,在激发光关闭后会爆发出光的爆发,在1-3秒后达到最大强度。该发射的光具有叶绿素荧光光谱。它似乎是一个以单线态激发的叶绿素为发射体的生物发光的新例子。

著录项

  • 作者

    Clayton, Roderick K.;

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  • 年度 1965
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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