Ignatov N V, Litvin F F
School of Biology, Lomonosov Moscow State University, Moscow, 119899, Russia.
Biochemistry (Mosc). 2001 Feb;66(2):195-204. doi: 10.1023/a:1002847716097.
Spectral methods were used to study the sequences of chlorophyll biosynthesis reactions in etiolated pea, bean, and maize plants in early stages (3-4 days) of growth. For these juvenile plants, along with the reaction chain known for mature (7-9 day-old) plants, a new reaction chain was found which started with phototransformation of the long-wavelength form PChld 686/676 into PChld 653/648. (PChld 653/648 differs from the main known precursor form PChld 655/650). The subsequent photoreduction of PChld 653/648 leads to the formation of Chld 684/676, which is transformed into Chl 688/680 in the course of a dark reaction. After completion of this reaction, fast (20-30 sec) quenching of the fluorescence of the reaction product is observed with the formation of non-fluorescent Chl 680. The reaction accompanied by pigment fluorescence quenching is absent in pea mutants with depressed function of Photosystem II reaction centers. This suggests that the newly found reaction chain leads to the formation of chlorophyll of the Photosystem II reaction center.
采用光谱方法研究了黄化豌豆、菜豆和玉米植株在生长早期(3 - 4天)叶绿素生物合成反应的序列。对于这些幼苗,除了成熟植株(7 - 9日龄)已知的反应链外,还发现了一条新的反应链,该反应链始于长波长形式的原叶绿素酸酯PChld 686/676光转化为PChld 653/648。(PChld 653/648与主要已知前体形式PChld 655/650不同)。随后PChld 653/648的光还原导致形成叶绿素酸酯Chld 684/676,其在暗反应过程中转化为叶绿素Chl 688/680。该反应完成后,观察到反应产物荧光快速(20 - 30秒)猝灭,形成非荧光叶绿素Chl 680。在光系统II反应中心功能受损的豌豆突变体中不存在伴随色素荧光猝灭的反应。这表明新发现的反应链导致了光系统II反应中心叶绿素的形成。