岗 位: | 研究员 |
---|---|
最高学历: | 博士 |
研究方向: | 酵母合成生物学 |
联系电话: | 0532-58261063 |
电子邮件: | liuql@qibebt.ac.cn |
通讯地址: | 山东省青岛市崂山区松岭路189号 |
个人主页: | http://mme.qibebt.ac.cn/info/1034/1041.htm |
1. Liu Q, Yu T, Campbell K, Nielsen J, Chen Y*. Rewiring carbon metabolism in yeast for high level production of aromatic chemicals. Nature Communications. 2019, 10(1):4976.
2. Liu Q#, Liu Y#, Li G, Savolainen O, Chen Y, Nielsen J*. De novo biosynthesis of bioactive isoflavonoids by engineered yeast cell factories. Nature Communications. 2021, 12(1):6085.
3. Liu Q, Liu Y, Chen Y, Nielsen J*. Current state of aromatics production using yeast: achievements and challenges. Current Opinion in Biotechnology. 2020, 65:65-74.
4. Liu Q, Wu Y, Chen Y, Bai Y, Xu H*, Qiao M*. mazF-mediated deletion system for large genome rearrangements in Saccharomyces cerevisiae. Research in Microbiology. 2014, 165(10):836-840.
5. Liu Q, Gao G, Xu H, Qiao M*. Identification of the bacteriocin subtilosin A and loss of purL results in its high-level production in Bacillus amyloliquefaciens. Research in Microbiology. 2012, 163(6-7):470-8.
6. Liu Q, Yu T, Campbell K, Nielsen J*, Chen Y. Modular pathway rewiring of yeast for amino acid production. Methods in Enzymology. 2018, 608:417-439.
7. Liu Y, Liu Q, Krivoruchko A, Khoomrung S, Nielsen J*. Engineering yeast phospholipid platform for de novo oleoylethanolamide production. Nature Chemical Biology. 2020, 16(2):197-205.
8. Li X, Wang Y, Li G, Liu Q, Pereira R, Chen Y, Nielsen J*. Metabolic network remodelling enhances yeast’s fitness on xylose using aerobic glycolysis. Nature Catalysis. 2021, 4(9):783-796.
9. Yu T#, Zhou YJ#, Huang M, Liu Q, Pereira R, David F, Nielsen J*. Reprogramming yeast metabolism from alcoholic fermentation to lipogenesis. Cell. 2018, 174(6):1549-1558.
10. Yu T, Zhou YJ, Wenning L, Liu Q, Krivoruchko A, Siewers V, Nielsen J, David F*. Metabolic engineering of Saccharomyces cerevisiae for production of very long chain fatty acid-derived chemicals. Nature Communications. 2017, 8:15587.