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Engineering the oleaginous yeast Yarrowia lipolytica for beta-farnesene overproduction

机译:工程糖粉酵母Yarrowia Lipolytica用于β-法呢烯生产

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beta-farnesene is a sesquiterpenoid with various industrial applications which is now commercially produced by a Saccharomyces cerevisiae strain obtained by random mutagenesis and genetic engineering. We rationally designed a genetically defined Yarrowia lipolytica through recovery of L-leucine biosynthetic route, gene dosage optimization of beta-farnesene synthase and disruption of the competition pathway. The resulting beta-farnesene titer was improved from 8 to 345 mg L-1. Finally, the strategy for decreasing the lipid accumulation by individually and iteratively knocking out four acyltransferases encoding genes was adopted. The result displayed that beta-farnesene titer in the engineered strain CIBT6304 in which acyltransferases (DGA1 and DGA2) were deleted increased by 45% and reached 539 mg L-1 (88 mg g(-1) DCW). Using fed-batch fermentation, CIBT6304 could produce the highest beta-farnesene titer (22.8 g L-1) among the genetically defined strains. This study will provide the foundation of engineering Y. lipolytica to produce other terpenoids more cost-efficiently.
机译:Beta-Farnereene是一种辛迪亚萜类萜类,其各种工业应用现在通过随机诱变和基因工程获得的酿酒酵母菌菌株商业生产。我们通过培养L-亮氨酸生物合成途径,β-法呢烯合酶的基因剂量优化和竞争途径破坏,理性地设计了遗传定义的Yarrowia Lipolytica。得到的β-法呢烯滴度从8-345mg L-1改善。最后,采用单独和迭代地敲出四种酰基转移酶来降低脂质积累的策略。结果显示,β-法呢烯滴度在工程化菌株CIBT6304中,其中缺失酰基转移酶(DGA1和DGA2)增加45%并达到539mg L-1(88mg(-1)DCW)。使用FED分批发酵,CIBT6304可以在遗传定义的菌株中产生最高的β-法呢烯滴度(22.8g L-1)。本研究将为工程Y. Lipolytica提供的基础,以更具成本效益地生产其他三萜类化合物。

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