纤细眼虫
自养
光合作用
二氧化碳
气泡
叶绿素
藻类
硅藻
叶绿素a
食品科学
植物
生物
细菌
生态学
物理
叶绿体
生物化学
基因
机械
遗传学
作者
Shino Suzuki-Nagata,Nobuyuki Mase,Tomoki Kozuka,J. C. Ng,Tetsuya Suzuki
摘要
Microalgae have been explored as a viable alternative food source. Among them, Euglena gracilis stands out as a promising single-cell algae. However, the challenge lies in developing more efficient and cost-effective methods for industrial mass production of Euglena gracilis under controlled culture conditions. Our research aimed to address this by investigating the role of nanotechnology in using fine to ultra-fine bubble CO2-ranging from micrometer to nanometer size-as feeding material to promote cell harvest of E. gracilis Z in autotrophic culture conditions. Our findings suggest that feeding E. gracilis Z with fine bubble CO2 (FB-CO2) increased cell growth and chlorophyll content in autotrophic culture conditions. The promotion effect can be attributed to the provision of non-ionized carbon dioxide to the photosynthetic system, which was further enhanced by the dispersion of FB-CO2 in the culture media under acidic conditions.
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