Areas of Focus
- 应用微生物代谢工程
- 合成生物学技术
Work Experience
- 2000-04~2002-09 - 天津市世纪生物肥有限公司 - 技术支撑 初级职称
- 1998-07~2000-03 - 武汉市隆华生物技术有限公司 - 技术支撑
Academic Background & Achievements
- 2007-04--2008-10 博士: 丹麦哥本哈根大学 生物系
- 2003-09--2010-07 博士: 上海交通大学 生物医学工程
- 1994-09--1998-07 学士: 华中农业大学 理学
Publications
- 秸秆真菌降解转化与可再生化工, 李金根, 刘倩, 刘德飞, 张永利, 郑小梅, 朱欣娜, 刘萍萍, 高乐, 王婧婷, 蔺玉萍, 张以恒, 田朝光, 2022
- New xylose transporters support the simultaneous consumption of glucose and xylose in Escherichia coli, 朱欣娜, 樊飞宇, 仇焕娜, 邵梦瑶, 李迪, 于勇, 毕昌昊, 张学礼, 2022
- CRISPR-based metabolic pathway engineering, 赵东东, 朱欣娜, 周航, 孙娜欣, 王婷, 毕昌昊, 张学礼, 2021
- 大肠杆菌细胞工厂的创建技术, 于勇, 朱欣娜, 毕昌昊, 张学礼, 2021
- Engineering an efficient H2 utilizing Escherichia coli platform by modulation of endogenous hydrogenases, 杨超, 李志, 赵东东, 陈静, 朱欣娜, 张学礼, 毕昌昊, 2021
- 优化大肠杆菌CRISPR/Cas9基因编辑系统及应用, 邵梦瑶, 路福平, 朱欣娜, 张学礼, 2020
- Engineering CrtW and CrtZ for improving biosynthesis of astaxanthin in Escherichia coli, 李迪, 李杨, 许娇阳, 李清艳, 唐金磊, 贾世如, 毕昌昊, 戴住波, 朱欣娜, 张学礼, 2020
- Construction of a carbon-conserving pathway for glycolate production by synergetic utilization of acetate and glucose in Escherichia coli, 于勇, 邵梦瑶, 李迪, 樊飞宇, 许洪涛, 路福平, 毕昌昊, 朱欣娜, 张学礼, 2020
- Construction of an energy-conserving glycerol utilization pathways for improving anaerobic succinate production in Escherichia coli, 于勇, 朱欣娜, 许洪涛, 张学礼, 2019
- Optimizing the localization of astaxanthin enzymes for improved productivity, 叶丽君, 朱欣娜, 吴涛, 王文, 赵东东, 毕昌昊, 张学礼, 2018
- CRISPR/Cas9-assisted gRNA-free one-step genome editing with no sequence limitations and improved targeting efficiency, 赵东东, 冯旭, 朱欣娜, 吴涛, 张学礼, 毕昌昊, 2017
- Improving Succinate Productivity by Engineering a Cyanobacterial CO2 Concentrating System (CCM) in Escherichia coli, 肖孟雍, 朱欣娜, 毕昌昊, 马延和, 张学礼, 2017
- The CRISPR/Cas9-facilitated multiplex pathway optimization (CFPO) technique and its application to improve the Escherichia coli xylose utilization pathway, 朱欣娜, 赵东东, 仇焕娜, 樊飞宇, 满淑丽, 毕昌昊, 张学礼, 2017
- Osmotolerance in Escherichia coli Is Improved by Activation of Copper Efflux Genes or Supplementation with Sulfur-Containing Amino Acids, 肖孟雍, 朱欣娜,