Kremer B P, Willenbrink J
Botanisches Institut der Universität Bonn, Bonn, Deutschland.
Planta. 1972 Mar;103(1):55-64. doi: 10.1007/BF00394606.
When discs punched out of the median part of the phylloid of Laminaria saccharina Lamour. were exposed to H(14)CO3 (-) in the light for periods of 10 sec to 10 min, (14)C was rapidly incorporated into various photosynthetic products. As compared with dark fixation, (14)C-photosynthesis increased exponentially during the first 60 sec of incubation in H(14)CO3 (-). Fixation rates were found to be 76 μmol CO2·dm(-2)·h(-1) or 100 μmol CO2·mg(-1) chlorophyll a·h(-1). Eighty-five per cent of the total (14)C assimilated after 10 sec was fixed in phosphoglycerate and in the sugar monophosphates, 2% in the sugar diphosphates, and only 3.5% in malate and aspartate. While the radioactivity of malate and aspartate only rose to a constant level, the percentage of the total (14)C in phosphoglycerate and-to a lower extent-that in the sugar monophosphates rapidly decreased with the duration of light exposure. Simultaneously, mannitol and glycine+serine became labelled with 43% and 32% respectively of the total (14)C after 10 min light fixation. In the dark, the percentage of the total (14)C in malate decreased with the time of H(14)CO(2-)-incubation, while there was a remarkable increase in radioactivity of aspartate and glutamate. Within 60 min darkness no labelling of mannitol was found.From the present results it is concluded that the photosynthetic carbon cycle first described by Bassham and Calvin operates in Laminaria saccharina.
当将从海带叶状体中部冲出的圆片在光照下暴露于H(14)CO3 (-)中10秒至10分钟时,(14)C迅速掺入各种光合产物中。与暗固定相比,在H(14)CO3 (-)中孵育的最初60秒内,(14)C光合作用呈指数增加。固定速率为76 μmol CO2·dm(-2)·h(-1)或100 μmol CO2·mg(-1)叶绿素a·h(-1)。10秒后同化的总(14)C中,85%固定在磷酸甘油酸和单糖磷酸酯中,2%固定在二糖磷酸酯中,仅3.5%固定在苹果酸和天冬氨酸中。虽然苹果酸和天冬氨酸的放射性仅上升到一个恒定水平,但磷酸甘油酸中总(14)C的百分比以及单糖磷酸酯中较低程度的总(14)C百分比随着光照时间的延长而迅速下降。同时,在光照固定10分钟后,甘露醇和甘氨酸 + 丝氨酸分别被总(14)C的43%和32%标记。在黑暗中,苹果酸中总(14)C 的百分比随着H(14)CO(2 -)孵育时间的延长而降低,而天冬氨酸和谷氨酸的放射性则显著增加。在60分钟黑暗中未发现甘露醇有标记。从目前的结果可以得出结论,巴斯汉姆和卡尔文首次描述的光合碳循环在海带中起作用。