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将极小绿藻与大肠杆菌共培养可提高中性脂质产量并改善生物柴油质量。

Co-culturing Chlorella minutissima with Escherichia coli can increase neutral lipid production and improve biodiesel quality.

作者信息

Higgins Brendan T, Labavitch John M, VanderGheynst Jean S

机构信息

Biological and Agricultural Engineering, University of California, Davis, California, 95616.

Department of Plant Sciences, University of California, Davis, California.

出版信息

Biotechnol Bioeng. 2015 Sep;112(9):1801-9. doi: 10.1002/bit.25609. Epub 2015 Jul 21.

Abstract

Lipid productivity and fatty acid composition are important metrics for the production of high quality biodiesel from algae. Our previous results showed that co-culturing the green alga Chlorella minutissima with Escherichia coli under high-substrate mixotrophic conditions enhanced both culture growth and crude lipid content. To investigate further, we analyzed neutral lipid content and fatty acid content and composition of axenic cultures and co-cultures produced under autotrophic and mixotrophic conditions. We found that co-culturing C. minutissima with E. coli under high substrate conditions (10 g/L) increased neutral lipid content 1.9- to 3.1-fold and fatty acid content 1.5- to 2.6-fold compared to equivalent axenic C. minutissima cultures. These same co-cultures also exhibited a significant fatty acid shift away from trienoic and toward monoenoic fatty acids thereby improving the quality of the synthesized fatty acids for biodiesel production. Further investigation suggested that E. coli facilitates substrate uptake by the algae and that the resulting growth enhancement induces a nitrogen-limited condition. Enhanced carbon uptake coupled with nitrogen limitation is the likely cause of the observed neutral lipid accumulation and fatty acid profile changes.

摘要

脂质生产率和脂肪酸组成是利用藻类生产高质量生物柴油的重要指标。我们之前的结果表明,在高底物混合营养条件下,将绿藻极小绿球藻与大肠杆菌共培养可促进培养物生长并提高粗脂质含量。为了进一步研究,我们分析了在自养和混合营养条件下产生的无菌培养物和共培养物的中性脂质含量、脂肪酸含量及组成。我们发现,在高底物条件(10 g/L)下,将极小绿球藻与大肠杆菌共培养,与同等的极小绿球藻无菌培养物相比,中性脂质含量增加了1.9至3.1倍,脂肪酸含量增加了1.5至2.6倍。这些共培养物还表现出脂肪酸显著从三烯酸向单烯酸转变,从而提高了用于生物柴油生产的合成脂肪酸的质量。进一步研究表明,大肠杆菌促进藻类对底物的摄取,由此产生的生长促进导致氮限制条件。增强的碳摄取与氮限制相结合可能是观察到的中性脂质积累和脂肪酸谱变化的原因。

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