Botanical Institute Department of Plant Physiology, University of Göteborg, Carl Skottsbergs Gata 22, S-413 19, Göteborg, Sweden.
Planta. 1976 Jan;133(1):47-52. doi: 10.1007/BF00386005.
The development of photosystem I activity of plastids isolated from greening barley (Hordeum distichum, L.) leaves was studied. The electron transport activity in photosystem I was measured as anthraquinone-mediated oxygen uptake and as light induced absorbance changes of the reaction centre molecule P700. P700 oxidation was observed after one hour of greening though an electron transport leading to oxygen uptake was observed after 30 minutes. Phenazine methosulphate had no effect on the oxidation of P700 until after four hours of greening. The ratio chlorophyll/P700 decreased from about 2300/l at one hour to 640/l at sixteen hours of greening. The light intensity dependence of the electron transport of photosystem I showed that the photosynthetic units gradually increased in size as the greening proceeded. The increase of the rate of the oxygen uptake, calculated on plastid basis, decreased after eight hours while the P700 content, calculated on plastid basis, increased continuously between three and sixteen hours. Chromatographic separations and fluorimetric analyses of the chlorophyll pigments showed that the reaction centre molecule could not be protochlorophyllide or chlorophyllide.
我们研究了从绿化大麦(Hordeum distichum,L.)叶片中分离出的质体中光系统 I 活性的发育情况。通过蒽醌介导的耗氧量和光诱导的反应中心分子 P700 吸收变化来测量光系统 I 中的电子传递活性。尽管在绿化 30 分钟后观察到导致耗氧的电子传递,但在绿化一小时后观察到 P700 的氧化。在绿化四小时后,蒽醌才对 P700 的氧化产生影响。叶绿素/P700 的比值从一小时时的约 2300/l 降低到十六小时时的 640/l。光系统 I 电子传递的光强度依赖性表明,随着绿化的进行,光合单位逐渐增大。以质体为基础计算的耗氧速率在八小时后下降,而以质体为基础计算的 P700 含量在三到十六小时之间持续增加。叶绿素色素的色谱分离和荧光分析表明,反应中心分子不可能是原叶绿素或叶绿素。