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10 株绿球藻和副球藻的脂质生产,以及小球藻脂质生产力的提高。

Production of lipids in 10 strains of Chlorella and Parachlorella, and enhanced lipid productivity in Chlorella vulgaris.

机构信息

Academy of Sciences of the Czech Republic, Dukelská 135, Czech Republic.

出版信息

Appl Microbiol Biotechnol. 2012 Apr;94(2):549-61. doi: 10.1007/s00253-012-3915-5. Epub 2012 Feb 25.

Abstract

We tested 10 different Chlorella and Parachlorella strains under lipid induction growth conditions in autotrophic laboratory cultures. Between tested strains, substantial differences in both biomass and lipid productivity as well as in the final content of lipids were found. The most productive strain (Chlorella vulgaris CCALA 256) was subsequently studied in detail. The availability of nitrates and/or phosphates strongly influenced growth and accumulation of lipids in cells by affecting cell division. Nutrient limitation substantially enhanced lipid productivity up to a maximal value of 1.5 g l(-1) day(-1). We also demonstrated the production of lipids through large-scale cultivation of C. vulgaris in a thin layer photobioreactor, even under suboptimal conditions. After 8 days of cultivation, maximal lipid productivity was 0.33 g l(-1) day(-1), biomass density was 5.7 g l(-1) dry weight and total lipid content was more than 30% dry weight. C. vulgaris lipids comprise fatty acids with a relatively high degree of saturation compared with canola oil offering a possible alternative to the use of higher plant oils.

摘要

我们在自养实验室培养条件下测试了 10 种不同的小球藻和拟小球藻菌株,以诱导脂质生长。在测试的菌株之间,生物量和脂质生产力以及最终脂质含量都存在显著差异。随后对最具生产力的菌株(普通小球藻 CCALA 256)进行了详细研究。硝酸盐和/或磷酸盐的可用性通过影响细胞分裂强烈影响细胞生长和脂质积累。营养限制大大提高了脂质生产力,最高值可达 1.5 g·L^(-1)·天^(-1)。我们还通过在薄层光生物反应器中大规模培养普通小球藻,甚至在亚最优条件下,证明了脂质的生产。培养 8 天后,最大脂质生产力为 0.33 g·L^(-1)·天^(-1),生物量密度为 5.7 g·L^(-1)干重,总脂质含量超过 30%干重。与菜籽油相比,普通小球藻脂质含有相对较高饱和度的脂肪酸,为使用高等植物油脂提供了一种可能的替代选择。

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