小球藻
异养
食品科学
混合营养体
生物
亚油酸
生物量(生态学)
生物转化
自养
工业发酵
小球藻
生物化学
植物
脂肪酸
藻类
化学
发酵
农学
细菌
遗传学
作者
Guiping Gong,Linpei Liu,Bo Wu,Jianting Li,Mingxiong He,Guoquan Hu
标识
DOI:10.1016/j.biortech.2024.130566
摘要
The low-cost carbon source, acetate, was utilized to feed a linoleic acid-rich Chlorella sorokiniana for microalgal biomass and lipid accumulation. Remarkably high tolerance capability to high acetate dosage up to 30 g/L was observed, with heterotrophy being the preferred trophic mode for algal growth and lipogenesis when supplemented 20 g/L acetate. Transcriptome analysis revealed a marked activation of pathways involved in acetate bioconversion and lipogenesis upon exposure to high-level of acetate. However, the enhancement of photorespiration inhibited photosynthesis, which ultimately led to a decrease in biomass and lipid under mixotrophy. Heterotrophic acetate-feeding generated more superior amino acid profiling of algal biomass and a predominant linoleic acid content (50 %). Heterotrophic repeat fed-batch strategy in 5 L fermenter significantly increased the growth performance and lipid titer, with the highest levels achieved being 23.4 g/L and 7.0 g/L, respectively. This work provides a viable approach for bio-products production through acetate-based heterotrophic algal cultivation.
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