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首页> 外文期刊>Applied Biochemistry and Biotechnology >Co-Culture of Microalgae, Cyanobacteria, and Macromycetes for Exopolysaccharides Production: Process Preliminary Optimization and Partial Characterization
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Co-Culture of Microalgae, Cyanobacteria, and Macromycetes for Exopolysaccharides Production: Process Preliminary Optimization and Partial Characterization

机译:微藻,蓝藻和大型菌共培养胞外多糖的生产:工艺初步优化和部分表征

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摘要

In this study, the biomass and exopolysaccharides (EPS) production in co-cultures of microalgae/cyanobacteria and macromycetes was evaluated as a technology for producing new polysaccharides for medical and/or industrial application. Based on biomass and EPS productivity of monocultures, two algae and two fungi were selected and cultured in different co-culture arrangements. The hydrosoluble EPS fractions from mono- and co-cultures were characterized by ¹³C NMR spectroscopy and gas chromatography coupled to mass spectrometry and compared. It was found that co-cultures resulted in the production of an EPS different from those produced by monocultures, showing fungal predominance with microalgal/cyanobacterial traces. Co-cultures conditions were screened (temperature, agitation speed, fungal and microalgae inoculation rate, initial pH, illumination rate, and glucose concentration) in order to achieve maximum biomass and EPS production, resulting in an increase of 33 and 61% in exopolysaccharides and biomass productions, respectively (patent pending).
机译:在这项研究中,对微藻/蓝细菌和大型真菌的共培养物中生物质和胞外多糖(EPS)的生产进行了评估,并将其作为生产用于医学和/或工业应用的新型多糖的技术。根据单培养的生物量和EPS生产率,选择了两种藻类和两种真菌,并以不同的共培养方式进行培养。通过13 C NMR光谱和与质谱联用的气相色谱法对单培养和共培养物中的水溶性EPS组分进行了表征,并进行了比较。发现共培养导致产生的EPS不同于单培养产生的EPS,显示出真菌占优势,并带有微藻/蓝细菌痕迹。筛选共培养条件(温度,搅拌速度,真菌和微藻接种率,初始pH,光照率和葡萄糖浓度),以实现最大的生物量和EPS产量,从而使胞外多糖和多糖分别增加33%和61%生物质生产,分别(专利申请中)。

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