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蓝绿藻集胞藻6803中糖原的积累、动员及周转

Accumulation, mobilization and turn-over of glycogen in the blue-green bacterium Anacystis nidulans.

作者信息

Lehmann M, Wöber G

出版信息

Arch Microbiol. 1976 Dec 1;111(1-2):93-7. doi: 10.1007/BF00446554.

Abstract
  1. Accumulation of glycogen up to a constant amount per cell was observed during the postexponential phase of growth, in the presence of an excess of a utilizable carbon source. Cell multiplication was reproducibly controlled by growth of the organism in a nitrogen-limiting medium under photoautotrophic conditions (presence of light, air plus CO2). 2. Temporary starvation, i.e. by removal of light or by the addition to an illuminated culture of DCMU, 3-(3',4'-dichlorophenyl)-1,1'-dimethylurea, a specific inhibitor of photosystem II, lead to a mobilization of glycogen in the cell. Furthermore, Anacystis nidulans, having accumulated glycogen by virtue of preculture under nitrogen-limiting conditions, will resume cell division when the culture medium is complemented with a nitrogen source. The ability of the organism to use glycogen as an endogenous carbon source for growth was observed by addition of a nitrogen source to nitrogen-starving cells and simultaneous removal of CO2. 3. During the period of constant amount of glycogen per cell the reserve polysaccharide was subject to turnover as demonstrated with a pulse chase-labelling technique. The demonstration of a turnover--for the first time with a bacterial species--indicated a strict balance in the relative rate of synthesis and degradation.
摘要
  1. 在生长的指数后期,在存在过量可利用碳源的情况下,观察到每个细胞中糖原积累至恒定水平。在光自养条件下(有光、空气加二氧化碳),在氮限制培养基中生物体的生长可重复地控制细胞增殖。2. 暂时饥饿,即通过去除光照或向光照培养物中添加二氯苯基二甲基脲(DCMU),一种光系统II的特异性抑制剂,会导致细胞内糖原的动员。此外,通过在氮限制条件下预培养积累了糖原的集胞藻,当培养基补充氮源时会恢复细胞分裂。通过向氮饥饿细胞添加氮源并同时去除二氧化碳,观察到该生物体利用糖原作为内源性碳源进行生长的能力。3. 在每个细胞中糖原含量恒定的时期,储备多糖经历周转,这通过脉冲追踪标记技术得以证明。首次在一种细菌物种中证明了周转,这表明合成和降解的相对速率存在严格平衡。

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