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通过光合作用和外源有机化合物营养富集激活红藻梅氏嗜热栖热菌中的氧化碳代谢:异养生长的证据

Activation of oxidative carbon metabolism by nutritional enrichment by photosynthesis and exogenous organic compounds in the red alga Cyanidioschyzon merolae: evidence for heterotrophic growth.

作者信息

Moriyama Takashi, Mori Natsumi, Sato Naoki

机构信息

Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Komaba 3-8-1, Meguro-ku, Tokyo, 153-8902 Japan ; JST, CREST, K's Gobancho 7 Gobancho, Chiyoda-ku, Tokyo, 102-0076 Japan.

出版信息

Springerplus. 2015 Sep 28;4:559. doi: 10.1186/s40064-015-1365-0. eCollection 2015.

Abstract

Respiration is an important process in photosynthetic organisms, as it is in other organisms, for the supply of ATP and metabolites required for biosynthesis. Furthermore, individual enzymatic activity is subject to regulation by metabolic intermediates in glycolysis and the citric acid cycle. However, little is known about how glycolysis or catabolism are related to photosynthetic activity or accumulation of photosynthetic products. We previously developed a flat-plate culture apparatus assembled from materials commonly used for gel electrophoresis, which enables high-density culture of the unicellular red alga Cyanidioschyzon merolae. In this study, a stationary dense culture of C. merolae, when re-activated in this culture apparatus, exhibited an accumulation of photosynthetically produced starch. We demonstrated that respiratory activity increased during the culture period, while photosynthetic activity remained constant. Gene expression analysis revealed that the genes involved in cytosolic glycolysis and the citric acid cycle were selectively activated, compared to the genes for the oxidative pentose phosphate pathway and the Calvin-Benson cycle. Measurements of the respiratory rate after addition of various organic substances showed that C. merolae can utilize almost any exogenous organic compound as a respiratory substrate, although the effectiveness of each compound was dependent on the culture time in the flat-plate culture, suggesting that glycolysis was rate-limiting to respiration, and its activity depended on the level of photosynthetic products within the cells. We also demonstrated that organic substances increased the rate of cell growth under dim light and, interestingly, C. merolae could grow heterotrophically in the presence of glycerol. Obligate photoautotrophy should be considered an ecological, rather than physiological, characteristic of C. merolae.

摘要

呼吸作用在光合生物中是一个重要过程,在其他生物中也是如此,它为生物合成提供所需的ATP和代谢物。此外,糖酵解和柠檬酸循环中的代谢中间产物可对个体酶活性进行调控。然而,关于糖酵解或分解代谢与光合活性或光合产物积累之间的关系,我们却知之甚少。我们之前开发了一种由常用于凝胶电泳的材料组装而成的平板培养装置,该装置能够对单细胞红藻梅氏嗜热栖热菌进行高密度培养。在本研究中,梅氏嗜热栖热菌的静止高密度培养物在该培养装置中重新激活时,表现出光合产生的淀粉积累。我们证明,在培养期间呼吸活性增加,而光合活性保持恒定。基因表达分析表明,与氧化戊糖磷酸途径和卡尔文-本森循环的基因相比,参与胞质糖酵解和柠檬酸循环的基因被选择性激活。添加各种有机物质后对呼吸速率的测量表明,梅氏嗜热栖热菌几乎可以利用任何外源有机化合物作为呼吸底物,尽管每种化合物的有效性取决于平板培养中的培养时间,这表明糖酵解是呼吸作用的限速步骤,其活性取决于细胞内光合产物的水平。我们还证明,有机物质在弱光下提高了细胞生长速率,有趣的是,梅氏嗜热栖热菌在甘油存在的情况下可以进行异养生长。专性光合自养应被视为梅氏嗜热栖热菌的一种生态而非生理特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfe2/4586181/4c788f059a25/40064_2015_1365_Fig1_HTML.jpg

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