The Calvin Cycle卡尔文循环
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Plants use energy from the sun in tiny energy factories called chloroplasts. Using chlorophyll in the process of photosynthesis, they convert the sun's energy into storable form in ordered sugar molecules such as glucose. In this way, carbon dioxide from the air and water from the soil in a more disordered state are combined to form the more ordered sugar molecules. 植物利用太阳提供的能量,在称为叶绿体的微小能量工厂中进行转换。通过光合作用过程中的叶绿素,它们将太阳的能量转化为可以储存的形式,储存在有序的糖分子中,如葡萄糖。这样,来自空气的二氧化碳和来自土壤的水,在更无序的状态下结合,形成更有序的糖分子。
Carbon dioxide is captured in a cycle of reactions known as the Calvin cycle or the Calvin-Benson cycle after its discoverers. It is also known as just the C3 cycle. Those plants that utilize just the Calvin cycle for carbon fixation are known as C3 plants. Carbon dioxide diffuses into the stroma of chloroplasts and combines with a five-carbon sugar, ribulose1,5-biphosphate (RuBP). The enzyme that catalyzes this reaction is referred to as RuBisCo, a large molecule that may be the most abundant organic molecule on the Earth. This catalyzed reaction produces a 6-carbon intermediate which decays almost immediately to form two molecules of the 3-carbon compound 3-phosphoglyceric acid (3PGA). The fact that this 3-carbon molecule is the first stable product of photosynthesis leads to the practice of calling this cycle the C3 cycle. 二氧化碳在一组称为卡尔文循环或卡尔文-本森循环的反应循环中被捕获,这些名称是为了纪念其发现者。它也被称为C3循环。那些仅利用卡尔文循环进行碳固定的植物被称为C3植物。二氧化碳扩散进入叶绿体的基质,并与一种五碳糖,核糖-1,5-二磷酸(RuBP)结合。催化此反应的酶称为RuBisCo,这是一种可能地球上最丰富的有机分子。该催化反应产生一个六碳中间体,几乎立即分解成两个3碳化合物3-磷酸甘油酸(3PGA)分子。由于这种3碳分子是光合作用的第一个稳定产物,因此这种循环被称为C3循环。
Energy from ATP and from the reduced coenyzme NADPH is used to remove a phosphate group from 3PGA and reduce the resulting diphosphoglycerate (DPGA) to produce the 3-carbon sugar glyceraladehyde-3-phosphate (G3P). Some of this G3P is used to regenerate the RuBP to continue the cycle, but some is available for molecular synthesis and is used to make fructose diphosphate. The fructose diphosphate is then used to make glucose, sucrose, starch and other carbohydrates. ATP和还原型辅酶NADPH提供的能量用于从3PGA上移除磷酸基团,并将生成的二磷酸甘油酸(DPGA)还原为3碳糖甘油醛-3-磷酸(G3P)。其中一部分G3P用于再生RuBP以继续循环,而另一部分则可用于分子合成,用来生成果糖二磷酸。果糖二磷酸随后用于生成葡萄糖、蔗糖、淀粉和其他碳水化合物。
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Index Photosynthesis Concepts Reference Moore, et al. Ch 7 索引 光合作用概念 参考 Moore 等人 第7章 | |||||||
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