Wang R T, Graham J R, Myers J
Biochim Biophys Acta. 1980 Sep 5;592(2):277-84. doi: 10.1016/0005-2728(80)90188-7.
Emission spectra and transient behavior of fluorescence in Porphyridium cruentum have been studied in search of the pathway of excitation energy from the phycobilisome to Photosystem I (PS I) of photosynthesis. For activating light at 436 nm, absorbed almost entirely by chlorophyll, fluorescence is dominated by the 718 nm band generally attributed to chlorophyll of PS I. Activating light at 550 nm, absorbed mostly by the phycobilisome, gives rise to the distinctive fluorescence band of PS II chlorophyll at 696 nm but also gives a large component at 718 nm. Analysis depends critically upon the source of emission at 718 nm under 550 nm activation: does it arise from PS I or PS IIC0 Ley and Butler (Ley, A.C. and Butler, W.L. (1976) Proc. Natl. Acad. Sci. U.S.A. 73, 3956-3960) have proposed that the 718 nm arises mostly from PS I, to which it is transferred by spillover from PS II. We suggest a different proposition: that under 550 nm activation most of the 718 emission arises from PS II. Analysis shows that this proposition provides an alternative explanation. Using the small change in fluorescence yield observed under 436 nm activation as a monitor of excitation in PS I, we provide evidence that under 550 activation most of the 718 nm fluorescence arises from PS II.
为了探寻激发能从集光色素蛋白复合体到光合作用光系统I(PS I)的传递途径,对紫球藻的发射光谱和荧光瞬态行为进行了研究。对于436nm的激活光(几乎完全被叶绿素吸收),荧光主要由通常归因于PS I叶绿素的718nm波段主导。550nm的激活光大部分被集光色素蛋白复合体吸收,会产生PS II叶绿素在696nm处独特的荧光带,但在718nm处也有很大一部分荧光。分析关键取决于550nm激活下718nm处的发射源:它是来自PS I还是PS II?Ley和Butler(Ley, A.C.和Butler, W.L.(1976年)美国国家科学院院刊73, 3956 - 3960)提出718nm的荧光大多来自PS I,是PS II通过溢出传递给它的。我们提出一个不同的观点:在550nm激活下,718nm的发射大多来自PS II。分析表明这个观点提供了另一种解释。利用在436nm激活下观察到的荧光产率的微小变化作为PS I中激发的监测指标,我们提供证据表明在550nm激活下,718nm的荧光大多来自PS II。