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Optimization of light for growth, photosynthesis, and hydrocarbon production by the colonial microalga Botryococcus braunii BOT-22

机译:殖民微藻Botryococcus braunii BOT-22对生长,光合作用和碳氢化合物生产的光的优化

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摘要

Optimization of the light conditions for biofuel production by the microalga Botryococcus braunii BOT-22 (race B) was performed using monochromatic red light. The lipid and sugar contents were approximately 40% and 20–30% of the cell dry weight, respectively, and about half of the lipids were liquid hydrocarbons. The half-saturation intensities for the production rate of lipids, hydrocarbons, and sugars were 63, 49, and 44 μmol m−2 s−1, respectively. Fluorescence microscopic images of Nile Red-stained cells showed an increased number of intracellular neutral lipid granules due to increased light intensity. After 16 days of incubation in the dark, lipid and sugar, but not hydrocarbon content decreased. Growth, metabolite production, and photosynthesis were saturated at 100, 200 and 1000 μmol m−2 s−1, respectively. These results indicate that photosynthetically captured energy is not used efficiently for metabolite production; thus, improvements in metabolic regulation may increase hydrocarbon production.
机译:利用单色红光优化了微藻布鲁氏菌BOT-22(种族B)生产生物燃料的光照条件。脂质和糖的含量分别约为细胞干重的40%和20–30%,并且大约一半的脂质是液态烃。脂质,烃和糖的生产率的半饱和强度分别为63、49和44μmolm-2 s-1。尼罗红染色细胞的荧光显微镜图像显示,由于光强度增加,细胞内中性脂质颗粒数量增加。在黑暗中孵育16天后,脂质和糖类但碳氢化合物含量并未降低。生长,代谢产物的产生和光合作用分别在100、200和1000μmolm-2 s-1达到饱和。这些结果表明,光合作用捕获的能量不能有效地用于代谢产物的生产。因此,代谢调节的改善可能会增加碳氢化合物的产量。

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