The production and characteristics of glycogen synthesized by various strains of the thermoacidophilic red microalgae Galdieria grown heterotrophically

IF 2.8 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Anastasia P. Kristijarti, Edita Jurak, Marc J. E. C. van der Maarel
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Abstract

Red microalgae from the Cyanidiophyceae, particularly Galdieria sulphuraria and Cyanidioschyzon merolae, are primitive photosynthetic thermoacidophiles that thrive in acidic hot springs and geysers. Unlike most Cyanidiophyceae, Galdieria strains are metabolically flexible as they can switch from photoautotrophic growth in the light to heterotrophic growth in complete darkness. Galdieria sulphuraria is especially noteworthy for its accumulation of various commercially valuable, functional compounds such as glycogen and phycocyanin. Glycogen, a branched fractal-like polysaccharide composed of several thousands of anhydroglucopyranose units, can be added to cosmetic products and sports drinks as a moisturizer or slow-digestible carbohydrate. While the production and structural characteristics of the glycogen of G. sulphuraria 108.79, isolated from Yellowstone National Park, have been previously described, our investigation aimed to explore glycogen production and properties across various Galdieria strains from different locations. Our findings reveal that all examined strains produce substantial amounts of highly branched glycogen when grown heterotrophically on glycerol in the dark. Notably, the structural characteristics of Galdieria glycogen distinguish it from both eukaryotic and prokaryotic glycogen, exhibiting a significantly higher degree of branching, substantially shorter side chains, and a considerable extent of indigestibility. These findings support the hypothesis that this highly branched, small glycogen is a long-term energy store, enabling survival during extended periods of complete darkness.

Abstract Image

异养生长的各种嗜热红色微藻 Galdieria 菌株合成的糖原的产量和特性
蓝藻门(Cyanidiophyceae)中的红色微藻,特别是硫磺藻(Galdieria sulphuraria)和梅洛藻(Cyanidioschyzon merolae),是原始的光合嗜热生物,在酸性温泉和间歇泉中生长茂盛。与大多数蓝藻不同,Galdieria 菌株具有灵活的新陈代谢能力,它们可以从光照下的光自养生长转换到完全黑暗的异养生长。Galdieria sulphuraria 尤其值得注意的是,它能积累各种具有商业价值的功能性化合物,如糖原和藻蓝蛋白。糖原是一种由数千个无水吡喃葡萄糖单位组成的分形多糖,可作为保湿剂或慢消化碳水化合物添加到化妆品和运动饮料中。虽然之前已经描述了从黄石国家公园分离出来的 G. sulphuraria 108.79 糖原的产生和结构特征,但我们的调查旨在探索来自不同地区的各种 Galdieria 菌株的糖原产生和特性。我们的研究结果表明,所有研究菌株在黑暗中异养甘油生长时,都会产生大量的高支化糖原。值得注意的是,Galdieria 糖原的结构特征有别于真核生物和原核生物的糖原,它的支化程度明显更高,侧链大大缩短,并具有相当程度的难消化性。这些发现支持了这样一种假设,即这种高度分支化的小型糖原是一种长期的能量储存,能够在长时间完全黑暗的环境中存活。
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来源期刊
Journal of Applied Phycology
Journal of Applied Phycology 生物-海洋与淡水生物学
CiteScore
6.80
自引率
9.10%
发文量
212
审稿时长
2.8 months
期刊介绍: The Journal of Applied Phycology publishes work on the rapidly expanding subject of the commercial use of algae. The journal accepts submissions on fundamental research, development of techniques and practical applications in such areas as algal and cyanobacterial biotechnology and genetic engineering, tissues culture, culture collections, commercially useful micro-algae and their products, mariculture, algalization and soil fertility, pollution and fouling, monitoring, toxicity tests, toxic compounds, antibiotics and other biologically active compounds. Each issue of the Journal of Applied Phycology also includes a short section for brief notes and general information on new products, patents and company news.
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