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光增强蓝细菌呼吸作用的特性。

Characterization of Light-Enhanced Respiration in Cyanobacteria.

机构信息

Department of Biological and Environmental Science, Faculty of Agriculture, Graduate School of Agricultural Science, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.

Core Research for Environmental Science and Technology, Japan Science and Technology Agency, 7 Goban, Chiyoda, Tokyo 102-0076, Japan.

出版信息

Int J Mol Sci. 2020 Dec 31;22(1):342. doi: 10.3390/ijms22010342.

Abstract

In eukaryotic algae, respiratory O uptake is enhanced after illumination, which is called light-enhanced respiration (LER). It is likely stimulated by an increase in respiratory substrates produced during photosynthetic CO assimilation and function in keeping the metabolic and redox homeostasis in the light in eukaryotic cells, based on the interactions among the cytosol, chloroplasts, and mitochondria. Here, we first characterize LER in photosynthetic prokaryote cyanobacteria, in which respiration and photosynthesis share their metabolisms and electron transport chains in one cell. From the physiological analysis, the cyanobacterium sp. PCC 6803 performs LER, similar to eukaryotic algae, which shows a capacity comparable to the net photosynthetic O evolution rate. Although the respiratory and photosynthetic electron transports share the interchain, LER was uncoupled from photosynthetic electron transport. Mutant analyses demonstrated that LER is motivated by the substrates directly provided by photosynthetic CO assimilation, but not by glycogen. Further, the light-dependent activation of LER was observed even with exogenously added glucose, implying a regulatory mechanism for LER in addition to the substrate amounts. Finally, we discuss the physiological significance of the large capacity of LER in cyanobacteria and eukaryotic algae compared to those in plants that normally show less LER.

摘要

在真核藻类中,呼吸 O 摄取在光照后增强,这被称为光增强呼吸(LER)。基于细胞质、叶绿体和线粒体之间的相互作用,它可能是由光合作用 CO 同化过程中产生的呼吸底物增加刺激的,其功能是在光照下保持真核细胞的代谢和氧化还原平衡。在这里,我们首次对光合作用原核蓝藻中的 LER 进行了表征,在蓝藻中,呼吸和光合作用在一个细胞中共享它们的代谢和电子传递链。从生理分析来看,蓝藻 sp. PCC 6803 表现出 LER,类似于真核藻类,其能力可与净光合 O 释放速率相媲美。尽管呼吸和光合电子传递共享链间电子传递,但 LER 与光合电子传递解偶联。突变分析表明,LER 是由光合作用 CO 同化直接提供的底物驱动的,而不是由糖原驱动的。此外,即使添加外源葡萄糖,也观察到 LER 的光依赖性激活,这意味着除了底物数量外,LER 还存在调节机制。最后,我们讨论了与通常表现出较少 LER 的植物相比,蓝藻和真核藻类中 LER 大容量的生理意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c2a/7796093/350b98b7dd6f/ijms-22-00342-g001.jpg

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