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Characterization and optimization of carbohydrate production from an indigenous microalga Chlorella vulgaris FSP-E

机译:表征和优化本地微藻小球藻FSP-E的碳水化合物生产

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摘要

In this study, three indigenous microalgae isolates were examined for their ability to produce carbohydrates. Among them, Chlorella vulgaris FSP-E displayed relatively high cell growth rate and carbohydrate content. The carbohydrate productivity of C. vulgaris FSP-E was further improved by using engineering strategies. The results show that using an appropriate light intensity and inoculum size could effectively promote cell growth and carbohydrate productivity. Nitrogen starvation triggered the accumulation of carbohydrates in the microalga, achieving a carbohydrate content of 51.3% after 4-day starvation. Under the optimal conditions, the highest biomass and carbohydrate productivity were 1.437 and 0.631gL~(-1)d~(-1), respectively. This performance is better than that reported in most related studies. Since glucose accounted for nearly 93% of the carbohydrates accumulated in C. vulgaris FSP-E, the microalga is an excellent feedstock for bioethanol fermentation.
机译:在这项研究中,检查了三种本地微藻分离物产生碳水化合物的能力。其中,小球藻FSP-E表现出较高的细胞生长速率和碳水化合物含量。通过使用工程策略,可进一步提高寻常梭菌FSP-E的碳水化合物生产率。结果表明,使用适当的光照强度和接种量可以有效地促进细胞生长和碳水化合物生产力。氮饥饿导致微藻中碳水化合物的积累,饥饿4天后碳水化合物含量达到51.3%。在最佳条件下,最高生物量和碳水化合物生产率分别为1.437gL〜(-1)d〜(-1)。该性能优于大多数相关研究报告的性能。由于葡萄糖占寻常小球藻FSP-E中积累的碳水化合物的近93%,因此微藻是生物乙醇发酵的极佳原料。

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