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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Effects of cassava starch hydrolysate on cell growth and lipid accumulation of the heterotrophic microalgae Chlorella protothecoides
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Effects of cassava starch hydrolysate on cell growth and lipid accumulation of the heterotrophic microalgae Chlorella protothecoides

机译:木薯淀粉水解产物对异养微藻原绿藻细胞生长和脂质积累的影响

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摘要

Heterotrophic fermentation of microalgae has been shown to accumulate high amounts of microalgal lipids, which are regarded as one of the most promising feedstocks for sustainable biodiesel production. To increase the biomass and reduce the cost of microalgal culture, the purpose of this study was to evaluate the possibility of using cassava starch hydrolysate (CSH) instead of glucose as carbon source for heterotrophic culture of Chlorella protothecoides in flasks. First, the two-step enzymatic process of hydrolysis of cassava starch by alpha -amylase and glucoamylase was optimized; the conversion efficiency for cassava starch was up to 97.7%, and over 80% of CSH was glucose. Subsequently, we compared heterotrophic cultures of C. protothecoiedes using glucose or CSH as carbon source. The results demonstrated that when using CSH as the organic carbon source, the highest biomass and the maximum total lipid yield obtained were 15.8 and 4.19g/L, representing increases of 42.3 and 27.7%, respectively, compared to using glucose as the organic carbon source. This suggests that CSH is a better carbon source than glucose for heterotrophic Chlorella protothecoides.
机译:已显示微藻的异养发酵会积累大量微藻脂质,这被认为是可持续生物柴油生产的最有前途的原料之一。为了增加生物量并降低微藻培养的成本,本研究的目的是评估使用木薯淀粉水解物(CSH)代替葡萄糖作为碳源进行烧瓶中原绿藻的异养培养的可能性。首先,对木薯淀粉被α-淀粉酶和葡糖淀粉酶水解的两步酶促工艺进行了优化。木薯淀粉的转化率高达97.7%,超过80%的CSH为葡萄糖。随后,我们比较了使用葡萄糖或CSH作为碳源的C. protothecoiedes的异养培养。结果表明,与使用葡萄糖作为有机碳源相比,使用CSH作为有机碳源时,获得的最高生物量和最大总脂质产量分别为15.8和4.19g / L,分别增加了42.3和27.7%。 。这表明对于异养原绿小球藻,CSH比葡萄糖是更好的碳源。

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