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首页> 外文期刊>African Journal of Microbiology Research >Engineered microbial consortium for the efficient conversion of biomass to biofuels: A preliminary study
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Engineered microbial consortium for the efficient conversion of biomass to biofuels: A preliminary study

机译:工程微生物财团,将生物质有效转化为生物燃料:初步研究

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This work showed ethanol production by a microbial consortium of Clostridium cellulolyticum and a recombinant Zymomonas mobilis (ZM4 pAA1). The ZM4 pAA1 and wild type ZM4 (ZM4 WT) were first tested on RM medium (ATCC 1341) containing 2% cellobiose as the carbon source. Ethanol production from ZM4 pAA1 was three times higher than that observed from the ZM4 WT. Concomitant with ethanol production was the reduction in OD from 2.00 to 1.580. The ZM4 pAA1 was then co-cultured with C. cellulolyticum using cellobiose and microcrystalline cellulose, respectively, as carbon sources. Results indicate that the ZM4 pAA1 with C. cellulolyticum utilized 2.0 g/L cellobiose, producing as much as 0.40 mM of ethanol, whereas only 0.20 mM ethanol was detected for the ZM4 WT co-cultured with C. cellulolyticum under similar conditions. A consortium of the ZM4 pAA1 and C. cellulolyticum using 7.5 g/L microcrystalline cellulose gave a far lower ethanol yield than when using cellobiose. In the latter case, ethanol production was detected within 5 days, whereas it took about 10 days for ethanol to be detectable for the ZM4 WT and C. cellulolyticum. Future efforts will concentrate on identifying suitable partners for the ZM4 pAA1, the correct concentration of feedstocks at which synergy will be observed, as well as optimize medium formulations and inoculation techniques.
机译:这项工作表明由解纤梭菌和重组运动发酵单胞菌(Zymomonas mobilis)(ZM4 pAA1)的微生物联盟生产乙醇。首先在含有2%纤维二糖作为碳源的RM培养基(ATCC 1341)上测试ZM4 pAA1和野生型ZM4(ZM4 WT)。 ZM4 pAA1产生的乙醇比ZM4 WT产生的乙醇高三倍。与乙醇生产同时的是,OD从2.00降低至1.580。然后分别使用纤维二糖和微晶纤维素作为碳源,将ZM4 pAA1与解纤梭菌共培养。结果表明,带有解纤梭菌的ZM4 pAA1利用2.0 g / L纤维二糖,产生多达0.40 mM的乙醇,而在相似条件下与解纤梭菌共培养的ZM4 WT仅检测到0.20 mM乙醇。与使用纤维二糖相比,使用7.5 g / L微晶纤维素的ZM4 pAA1和解纤梭菌的联合体产生的乙醇收率低得多。在后一种情况下,在5天之内就检测到了乙醇的产生,而ZM4 WT和解纤梭菌却需要大约10天才能检测到乙醇。未来的工作将集中在确定ZM4 pAA1的合适伙伴,观察到协同作用的正确原料浓度,以及优化培养基配方和接种技术。

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