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优化利用大型海藻巨藻转化可再生蒎烯生产

Optimization of renewable pinene production from the conversion of macroalgae Saccharina latissima.

机构信息

Joint BioEnergy Institute, Emeryville, CA, USA; Sandia National Laboratories, Livermore, CA, USA.

Sandia National Laboratories, Livermore, CA, USA.

出版信息

Bioresour Technol. 2015 May;184:415-420. doi: 10.1016/j.biortech.2014.09.105. Epub 2014 Sep 28.

Abstract

Enzymatic hydrolysis of Saccharina latissima with laminarinase was compared to hydrolysis with different combinations of cellulase and hemicellulase enzyme mixtures. The hemicellulase mixture resulted in similar release of glucose, while the cellulase mixture released 40% more glucose than laminarinase alone. The combination of a laminarinase augmented with a cellulase mixture resulted in a 53% increase of glucose release from S. latissima than laminarinase. Increasing biomass loading above 4% (w/v) reduced the sugar yield. Resulting macroalgae hydrolysates were used as a carbon source for the production of pinene, making use of a novel two plasmid Escherichia coli system. The macroalgal hydrolysates were suitable for the novel microbial production of pinene with no further treatment and/or purification.

摘要

与不同纤维素酶和半纤维素酶混合物组合的水解相比,用裂壶藻酶对裙带菜进行了酶解。半纤维素酶混合物导致葡萄糖释放相似,而纤维素酶混合物比单独使用裂壶藻酶释放的葡萄糖多 40%。裂壶藻酶与纤维素酶混合物的组合使裙带菜的葡萄糖释放量比裂壶藻酶增加了 53%。生物质加载量超过 4%(w/v)会降低糖产量。所得大型海藻水解物被用作新型两质粒大肠杆菌系统生产蒎烯的碳源。大型藻类水解物适合新型微生物生产蒎烯,无需进一步处理和/或纯化。

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