Ignatov NV, Gostimskii SA, Satina LY, Litvin FF
Department of Physico-Chemical Biology, School of Biology, Lomonosov Moscow State University, Moscow, 119899, Russia.
Biochemistry (Mosc). 1998 Nov;63(11):1319-27.
In etiolated pea and maize leaves illuminated after incubation at 38 degreesC, a new dark reaction was shown manifested in the bathochromic shift of spectral bands and accompanied by esterification of the product of protochlorophyllide photochemical reduction--Chld 684/676: Chld 684/676 --> Chl 688/680. After completion of the reaction a rapid (20-30 sec) quenching of the fluorescence of the reaction product (Chl 688/680) was observed. The reaction Chld 684/676 --> Chl 688/680 is inhibited under anaerobic conditions and in the presence of cyanide; the reaction accompanied by Chl 688/680 fluorescence quenching is not observed in pea mutants with impaired function of photosystem II reaction centers. The spectral properties of the formed Chl form with the absorption maximum at 680 nm, fluorescence quenching, and simultaneous synthesis of pheophytin suggest that the reaction is connected with the chlorophyll of photosystem II reaction center--P-680.
在38℃孵育后光照处理的黄化豌豆和玉米叶片中,一个新的暗反应表现为光谱带的红移,并伴随着原叶绿素酸酯光化学还原产物(Chld 684/676)的酯化:Chld 684/676 --> Chl 688/680。反应完成后,观察到反应产物(Chl 688/680)的荧光迅速(20 - 30秒)猝灭。Chld 684/676 --> Chl 688/680反应在厌氧条件下和存在氰化物时受到抑制;在光系统II反应中心功能受损的豌豆突变体中未观察到伴随Chl 688/680荧光猝灭的反应。所形成的在680 nm处有吸收最大值的叶绿素形式的光谱特性、荧光猝灭以及脱镁叶绿素的同时合成表明,该反应与光系统II反应中心的叶绿素——P - 680有关。