专家人才
刘全力
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
简历
研究员,微生物制造工程中心酵母合成生物技术研究组组长。2009年获天津师范大学生物科学学士学位。2015年获南开大学微生物学博士学位,导师乔明强教授。2015年-2020年于瑞典查尔姆斯理工大学Jens Nielsen院士课题组从事博士后研究。2022年10月入职中科院新葡的京集团3512。长期从事酵母合成生物学相关的应用基础研究,包括酿酒酵母基因组减小底盘细胞构建和芳香化合物微生物细胞工厂的设计与优化。以第一作者在 Nature Communications,Current Opinion in Biotechnology、Research in Microbiology等期刊发表论文SCI学术论文20余篇。 
获奖及荣誉
山东省人才称号、研究所“清源学者”青年人才 
代表论著

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.