本科及硕士毕业于南开大学,2009年于弗罗里达大学取得博士学位,先后在特拉华大学和劳伦斯伯克利国家实验室工作,2014年开始在中科院天津工生所工作。主要研究方向为微生物合成生物学与代谢工程。现从事合成生物学技术方法的创建与运用,CO2固定,合成气生物转化等方面的研究。在主流学术期刊Metab Eng, ACS Synth., Bio.l, Microb. Cell Fact., ChemComm., J. Bacteriol., AEM发表SCI论文20篇以上,申请国际专利一项。
研究成果
构建一个合成生物学工具用于在非模型细菌,野生细菌中建立复杂代谢途径;并成功基因改造R.eutropha,Klebsiella等非模式菌,获得开创性应用;
发明一种新的基因操作方法用于连续向细菌染色体加入DNA片段,获得专利,基因改造Clostridium菌株增加丁醇产量;
成功从环境样品中分离并改造细菌E. asburia JDR1,通过代谢工程改造E. asburiae JDR-1从半纤维素水解产物中生产乙醇或者乳酸。
发表论文
(1) Balanced activation of IspG and IspH to eliminate MEP intermediate accumulation and improve isoprenoids production in Escherichia coli, Metab Eng., 2017, 通讯作者
(2) The CRISPR/Cas9-facilitated multiplex pathway optimization (CFPO) technique and its application to improve the Escherichia coli xylose utilization pathway., Metab Eng., 2017, 通讯作者
(3) Improving Succinate Productivity by Engineering a Cyanobacterial CO2 Concentrating System (CCM) in Escherichia coli., Biotechnol J., 2017, 通讯作者
(4) Membrane engineering – A novel strategy to enhance the production and accumulation of β-carotene in Escherichia coli., Metab Eng., 2017, 通讯作者
(5) A novel point mutation in RpoB improves osmotolerance and succinic acid production in Escherichia coli., BMC biotechnology, 2017, 第 4 作者
(6) Construction of a novel anaerobic pathway in Escherichia coli for propionate production, BMC biotechnology, 2017, 通讯作者
(7) Type IIs restriction based combinatory modulation technique for metabolic pathway optimization, Microbial Cell Factories, 2017, 通讯作者
(8) Development of a modularized two-step (M2S) chromosome integration technique for integration of multiple transcription units in Saccharomyces cerevisiae, Biotechnology for Biofuels, 2016, 通讯作者
(9) Development of a fast and easy method for Escherichia coli genome editing with CRISPR/Cas9, Microbial Cell Factories, 2016, 通讯作者
(10) Engineering Corynebacterium glutamicum for violacein hyper production, Microbial Cell Factories, 2016, 通讯作者
(11) Combinatory optimization of chromosomal integrated mevalonate pathway for β-carotene production in Escherichia coli, Microbial Cell Factories, 2016, 第 3 作者
(12) End-to-end automated microfluidic platform for synthetic biology: from design to functional analysis, Journal of Biological Engineering, 2016, 第 4 作者
(13) Cross-Platform Laboratory Automation system, ACS Synth. Biol, 2014, 第 4 作者
(14) Overexpression of the Lactobacillus plantarum peptidoglycan biosynthesis murA2 gene increases the tolerance of Escherichia coli to alcohols and enhances ethanol production, BIOENERGY AND BIOFUELS, 2014, 第 2 作者
(15) Developing and Applying a Broad-Host Synthetic Biology Tool Box for Metabolic Engineering of Ralstonia eutropha for Hydrocarbon Production., Microb Cell Fact, 2013, 第 1 作者
(16) Functionalizing Bacterial Cell Surfaces with a Phage Protein, Chem Comm, 2013, 第 3 作者
(17) PaR-PaR Laboratory Automation platform, ACS Synth. Biol, 2012, 第 4 作者
(18) SpoIIE is necessary for asymmetric division, sporulation, and the expression of σF, σE, and σG but does not control solvent production in Clostridium acetobutylicum., J. Bacteriol., 2011, 第 1 作者
(19) Complete fermentation of xylose and methylglucuronoxylose derived from methylglucuronoxylan by Enterobacter asburiae strain JDR-1, Applied and Environmental Microbilogy, 2009, 第 1 作者
(20) Genetic engineering Enterobacter asburiae strain JDR-1 for efficient ethanol production from hemicellulose hydrolysate, Applied and Environmental Microbilogy, 2009, 第 1 作者
(21) Genetic engineering of Enterobacter asburiae strain JDR-1 for efficient latic acid production from hemicellulose hydrolysate, Biotechnology Letters, 2009, 第 1 作者