Buchanan B B
Division of Molecular Plant Biology, University of California, Berkeley 94720, USA.
Bioscience. 1984 Jun;34(6):378-83.
In addition to its well-established function in supplying the energy for carbon dioxide assimilation, light plays a regulatory role in photosynthesis. The ferredoxin/thioredoxin system is a major mechanism whereby light functions in this capacity. Here, light absorbed by chlorophyll is converted via ferredoxin into a reductant messenger, reduced thioredoxin, that interacts with key target enzymes, thereby changing their catalytic activities. In this way, the green plant achieves maximum efficiency of its photosynthetic (light) and heterotrophic (dark) capabilities.
除了在为二氧化碳同化提供能量方面已确立的功能外,光在光合作用中还起着调节作用。铁氧还蛋白/硫氧还蛋白系统是光发挥这种作用的主要机制。在这里,叶绿素吸收的光通过铁氧还蛋白转化为还原信使——还原型硫氧还蛋白,它与关键靶酶相互作用,从而改变它们的催化活性。通过这种方式,绿色植物实现了其光合(光)和异养(暗)能力的最大效率。