Komatsu Hirohisa, Wada Katsuhiro, Kanjoh Terumitsu, Miyashita Hideaki, Sato Mayumi, Kawachi Masanobu, Kobayashi Masami
Division of Materials Science, Faculty of Pure and Applied Science, University of Tsukuba, Tsukuba, Ibaraki, 305-8573, Japan.
Graduate School of Human and Environment Studies, Kyoto University, Kyoto, 606-8501, Japan.
Photosynth Res. 2016 Dec;130(1-3):445-467. doi: 10.1007/s11120-016-0283-5. Epub 2016 Jun 23.
In this review, we introduce our recent studies on divinyl chlorophylls functioning in unique marine picoplankton Prochlorococcus sp. (1) Essential physicochemical properties of divinyl chlorophylls are compared with those of monovinyl chlorophylls; separation by normal-phase and reversed-phase high-performance liquid chromatography with isocratic eluent mode, absorption spectra in four organic solvents, fluorescence information (emission spectra, quantum yields, and life time), circular dichroism spectra, mass spectra, nuclear magnetic resonance spectra, and redox potentials. The presence of a mass difference of 278 in the mass spectra between [M+H] and the ions indicates the presence of a phytyl tail in all the chlorophylls. (2) Precise high-performance liquid chromatography analyses show divinyl chlorophyll a' and divinyl pheophytin a as the minor key components in four kinds of Prochlorococcus sp.; neither monovinyl chlorophyll a' nor monovinyl pheophytin a is detected, suggesting that the special pair in photosystem I and the primary electron acceptor in photosystem II are not monovinyl but divinyl-type chlorophylls. (3) Only Prochlorococcus sp. NIES-2086 possesses both monovinyl chlorophyll b and divinyl chlorophyll b, while any other monovinyl-type chlorophylls are absent in this strain. Monovinyl chlorophyll b is not detected at all in the other three strains. Prochlorococcus sp. NIES-2086 is the first example that has both monovinyl chlorophyll b as well as divinyl chlorophylls a/b as major chlorophylls.
在本综述中,我们介绍了我们最近关于二乙烯基叶绿素在独特的海洋微微型浮游生物原绿球藻属(Prochlorococcus sp.)中功能的研究。(1)将二乙烯基叶绿素的基本物理化学性质与单乙烯基叶绿素的性质进行了比较;采用等度洗脱模式的正相和反相高效液相色谱进行分离,测定了在四种有机溶剂中的吸收光谱、荧光信息(发射光谱、量子产率和寿命)、圆二色光谱、质谱、核磁共振光谱以及氧化还原电位。质谱中[M + H]与离子之间存在278的质量差异,表明所有叶绿素中均存在植醇尾。(2)精确的高效液相色谱分析表明,二乙烯基叶绿素a'和二乙烯基脱镁叶绿素a是四种原绿球藻属中的次要关键成分;未检测到单乙烯基叶绿素a'和单乙烯基脱镁叶绿素a,这表明光系统I中的特殊对和光系统II中的初级电子受体不是单乙烯基而是二乙烯基型叶绿素。(3)只有原绿球藻属NIES - 2086同时拥有单乙烯基叶绿素b和二乙烯基叶绿素b,而该菌株中不存在任何其他单乙烯基型叶绿素。在其他三个菌株中完全未检测到单乙烯基叶绿素b。原绿球藻属NIES - 2086是第一个以单乙烯基叶绿素b以及二乙烯基叶绿素a/b作为主要叶绿素的例子。