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Microbial production of sabinene—a new terpene-based precursor of advanced biofuel

机译:bin烯的微生物生产-一种基于萜烯的新型高级生物燃料前体

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Background Sabinene, one kind of monoterpene, accumulated limitedly in natural organisms, is being explored as a potential component for the next generation of aircraft fuels. And demand for advanced fuels impels us to develop biosynthetic routes for the production of sabinene from renewable sugar. Results In this study, sabinene was significantly produced by assembling a biosynthetic pathway using the methylerythritol 4-phosphate (MEP) or heterologous mevalonate (MVA) pathway combining the GPP and sabinene synthase genes in an engineered Escherichia coli strain. Subsequently, the culture medium and process conditions were optimized to enhance sabinene production with a maximum titer of 82.18?mg/L. Finally, the fed-batch fermentation of sabinene was evaluated using the optimized culture medium and process conditions, which reached a maximum concentration of 2.65?g/L with an average productivity of 0.018?g?h-1?g-1 dry cells, and the conversion efficiency of glycerol to sabinene (gram to gram) reached 3.49%. Conclusions This is the first report of microbial synthesis of sabinene using an engineered E. coli strain with the renewable carbon source as feedstock. Therefore, a green and sustainable production strategy has been established for sabinene.
机译:背景技术Sabinene是一种单萜,仅在天然生物中有限地积累,目前正在作为下一代飞机燃料的潜在成分进行研究。对先进燃料的需求促使我们开发生物合成路线,以利用可再生糖生产sa木。结果在这项研究中,通过在工程化的大肠杆菌菌株中使用GPP和sa烯合酶基因结合了甲基磷酸赤藓醇4-磷酸酯(MEP)或异源甲羟戊酸酯(MVA)途径来组装生物合成途径,从而显着地产生了bin烯。随后,对培养基和工艺条件进行了优化,以提高sa烯的产量,最大效价为82.18?mg / L。最后,使用优化的培养基和工艺条件对sa木的分批发酵进行了评估,其最高浓度为2.65?g / L,平均生产率为0.018?g?h -1 ?g -1 干细胞,甘油转化为bin烯的转化效率(克对克)达到3.49%。结论这是使用工程化的大肠杆菌菌株以可再生碳源为原料进行的sa烯微生物合成的首次报道。因此,已经建立了sa烯的绿色且可持续的生产策略。

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