Department of Biology, McGill University, H3A 1B1, Montreal, P.Q., Canada.
Planta. 1990 Jan;180(2):249-56. doi: 10.1007/BF00194004.
The thylakoid lamellae which traverse the pyrenoid of the unicellular red alga Porphyridium cruentum (Agardh) Nägeli appear to lack phycobilisomes. We have confirmed by immuno-electron microscopy that phycoerythrin (PE), an important structural component of the phycobilisomes of red algae, is absent from the pyrenoid. To characterize pyrenoid thylakoids further, electron-microscopic cytochemical methods were employed to detect photosystem activity. Photosystem (PS) I activity was demonstrated in both stromal and pyrenoid thylakoids by the photooxidation of 3,3'-diaminobenzidine. In contrast, the localization of photoreduced distyryl nitroblue tetrazolium demonstrated that PSII activity was restricted to stromal thylakoids. The observed partitioning of PE and PSII activity within the plastid may be related to another observation, that being the localization of nearly all ribulose-1,5-bisphosphate carboxylase/oxygenase (EC 4.1.1.39) within the pyrenoid of this alga. It is possible that the pyrenoid of P. cruentum functions as a specific metabolic compartment where CO2 fixation is enhanced by the absence of photosynthetic O2 evolution.
贯穿单细胞红藻血紫质(Agardh)Nägeli 的淀粉核的类囊体片似乎缺乏藻胆体。我们通过免疫电子显微镜证实,藻红蛋白(PE),红藻藻胆体的重要结构成分,不存在于淀粉核中。为了进一步描述淀粉核类囊体,我们采用电子显微镜细胞化学方法来检测光合作用系统的活性。通过 3,3'-二氨基联苯胺的光氧化,在基质和淀粉核类囊体中都证明了光合作用系统 I(PSI)的活性。相比之下,光还原的二苯乙烯硝基四唑蓝的定位表明 PSII 活性仅限于基质类囊体。在质体中观察到的 PE 和 PSII 活性的分区可能与另一个观察结果有关,即在这种藻类的淀粉核中几乎所有的核酮糖-1,5-二磷酸羧化酶/加氧酶(EC 4.1.1.39)的定位。淀粉核可能作为一个特定的代谢隔室,其中 CO2 固定通过光合作用 O2 释放的缺失而增强。