不同碳源替代培养基对绿藻生长和paramylon产量有促进作用

Nadine Uliesther, Istini Nurafifah, Irma Rohmawati, Renata Adaranyssa Egistha Putri, Tia Erfianti, Eko Agus Suyono
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摘要

Euglena sp.是一种微藻,被广泛认为是一种重要的化合物,称为paramylon。如果绿藻在含有碳源的培养基中生长,它可以产生更多的paramylon。培养基的选择必须优化,以最大限度地提高生物质产量和专门针对代谢物。本研究旨在比较葡萄糖和谷氨酸作为碳源对绿藻生长速率、生物量和paramylon (β-1,3-葡聚糖)含量的影响。以葡萄糖和谷氨酸作为不同的有机碳源进行处理。在Cramers and Myers (CM)培养基中添加各1 g/l的处理,观察它们对Euglena sp.培养的生长速度、生物量和paramylon含量的影响。以吸光度为基础的光密度计算细胞密度,以干重测定生物量,以苯酚-硫酸法分析产生的paramylon含量。添加葡萄糖的CM培养基处理(CM+ glucose)的特定生长率、生物量和paramylon含量最高,分别为2.902±0.338 (OD680/dx10-1)、0.476±0.023 g/l和2.416±0.129 mg/ml,可用于工业化生产paramylon,因此有必要对Euglena sp.本地菌株的种类进行进一步的鉴定。希望今后能进一步研究利用有机废弃物代替培养基中的有机碳源等其他可能的方法来提高Euglena sp.中paramylon的含量。
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Different carbon source alternative medium improves Euglena sp. growth and paramylon production
Euglena sp. is a type of microalgae are widely recognized for producing an important compound called paramylon. If Euglena sp. is grown in a medium containing a carbon source, it can produce more paramylon. The culture medium alternative must be optimized to maximize biomass production and specifically targeted metabolites. This study aims to compare the effects of glucose and glutamic acid as carbon sources on the growth rate, biomass, and paramylon (β-1,3-glucan) content of Euglena species. The treatment that carried out as the different organic carbon sources were glucose and glutamic acid. About one g/l of each treatment were added to Cramers and Myers (CM) culture medium to see how they affected growth rate, biomass, and paramylon content in Euglena sp. culture. The optical density based on absorbance was used to calculate the density of the cells, biomass was known by measuring the dry weight, and paramylon content produced was analyzed using the phenol-sulfuric acid method. The CM medium treatment with glucose added (CM+Glucose) had the highest specific growth rate, biomass, and paramylon content, with values of 2.902±0.338 (OD680/dx10-1), 0.476±0.023 g/l, and 2.416±0.129 mg/ml Euglena sp. can be utilized to produce paramylon on an industrial scale, so it is necessary to carry out further identification process regarding the species of Euglena sp. local strain, and it is hoped that there will be further research on other possible methods to increase the paramylon content in Euglena sp., such as using organic waste to replace the organic carbon source in the medium.
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