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本文引用的文献

1
Biogenesis and light regulation of the major light harvesting chlorophyll-protein of diatoms.硅藻主要光捕获叶绿素蛋白的生物发生和光调控。
Plant Physiol. 1986 Jan;80(1):43-51. doi: 10.1104/pp.80.1.43.
2
Photoadaptation in marine phytoplankton : changes in spectral absorption and excitation of chlorophyll a fluorescence.海洋浮游植物的光适应:叶绿素 a 荧光的光谱吸收和激发变化。
Plant Physiol. 1984 Oct;76(2):518-24. doi: 10.1104/pp.76.2.518.
3
A diatom light-harvesting pigment-protein complex : purification and characterization.一个硅藻的捕光色素蛋白复合物: 分离与鉴定。
Plant Physiol. 1984 Oct;76(2):483-9. doi: 10.1104/pp.76.2.483.
4
Novel Phycoerythrins in Marine Synechococcus spp. : Characterization and Evolutionary and Ecological Implications.海洋聚球藻属中的新型藻红蛋白:特性及其进化和生态意义
Plant Physiol. 1984 Jul;75(3):732-9. doi: 10.1104/pp.75.3.732.
5
Photosynthetic action spectra of marine algae.海洋藻类的光合作用光谱。
J Gen Physiol. 1950 Mar;33(4):389-422. doi: 10.1085/jgp.33.4.389.
6
[The carotenoid pattern and the occurrence of the light-induced xanthophyll cycle in various classes of algae. V. A few members of Cryptophyceae].[不同藻类类群中的类胡萝卜素模式及光诱导叶黄素循环的发生。V. 隐藻纲的一些成员]
Arch Mikrobiol. 1970;73(1):77-89.

叶黄素,一种在色藻中发现的光捕获类胡萝卜素。

Antheraxanthin, a light harvesting carotenoid found in a chromophyte alga.

机构信息

Department of Molecular Genetics and Cell Biology, Barnes Laboratory, Chicago, Illinois 60637.

出版信息

Plant Physiol. 1986 Feb;80(2):583-7. doi: 10.1104/pp.80.2.583.

DOI:10.1104/pp.80.2.583
PMID:16664665
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1075158/
Abstract

The pigments of the chromophyte freshwater alga, Chrysophaera magna Belcher were analyzed by thin layer chromatography (TLC) and high performance liquid chromatography (HPLC) to reveal the presence of chlorophylls a and c, beta-carotene, fucoxanthin, and antheraxanthin. The presence of antheraxanthin was verified by comparison of TLC R(F) values, HPLC retention times, and absorption features to those of authentic, synthetic antheraxanthin. Antheraxanthin accounted for about 15% of the total carotenoid content of C. magna. The molar ratio of the major carotenoids was antheraxanthin:fucoxanthin:beta-carotene, 1:2.3:3.3. The whole-cell absorption spectrum revealed a broad band between 470 and 520 nanometers which was attributed to fucoxanthin and antheraxanthin in vivo. Upon extraction in hydrocarbon, this broad absorption region was lost. The in vivo fluorescence excitation spectrum for 680 nm emission revealed the energy transfer activities and light harvesting roles of chlorophylls a and c, and fucoxanthin. In addition, an excitation band was resolved at 487 nanometers which could be attributed only to antheraxanthin. Comparison of whole-cell fluorescence excitation spectra of C. magna with the diatom Phaeodactylum tricornutum, which possesses fucoxanthin but not antheraxanthin, supports the assignment of the 487 nm band to antheraxanthin. This is the first report of a photosynthetic light harvesting function of the xanthophyll, antheraxanthin. This carotenoid broadens the absorption cross-section for photosynthesis in C. magna and extends light harvesting into the green portion of the spectrum.

摘要

厚甲藻色素的淡水藻类,黄球藻分析了薄层色谱(TLC)和高效液相色谱(HPLC)揭示叶绿素 A 和 C,β-胡萝卜素,岩藻黄素,和玉米黄质的存在。玉米黄质的存在通过 TLC R(F)值,HPLC 保留时间和吸收特征与真实,合成玉米黄质的比较来验证。玉米黄质占黄球藻总类胡萝卜素含量的约 15%。主要类胡萝卜素的摩尔比为玉米黄质:岩藻黄素:β-胡萝卜素,1:2.3:3.3。全细胞吸收光谱在 470 和 520 纳米之间显示出宽带,这归因于体内的岩藻黄素和玉米黄质。在烃中提取后,此宽吸收区域丢失。680nm 发射的体内荧光激发光谱揭示了叶绿素 A 和 C 以及岩藻黄素的能量转移活性和光收集作用。此外,在 487 纳米处解析出一个激发带,仅归因于玉米黄质。黄球藻的全细胞荧光激发光谱与含有岩藻黄素但不含玉米黄质的硅藻角毛藻的比较支持将 487nm 带归因于玉米黄质。这是关于光合作用中叶黄素玉米黄质的光收集功能的首次报道。这种类胡萝卜素拓宽了黄球藻光合作用的吸收截面,并将光收集扩展到光谱的绿色部分。