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陈国强
2023-05-12 11:32
  • 陈国强
  • 陈国强 - 教授-清华大学-生命科学学院-个人资料

近期热点

资料介绍

个人简历


1981-1985 广州华南理工大学,学士\r
1986-1989 奥地利格拉茨工业大学,博士\r
1990-1992 英国诺丁汉大学,博士后\r
1992-1994 加拿大阿尔伯达大学,博士后\r
1994-1997 清华大学生命科学学院,副教授\r
1997-至今 清华大学生命科学学院,教授、博导

研究领域


"""""合成生物学、微生物代谢工程、生物材料、工业生物技术"

近期论文


Yu LP, Yan X, Zhang X, Chen XB, Wu Q, Jiang XR,Chen GQ. Biosynthesis of Functional Polyhydroxyalkanoates by Engineered Halomonas bluephagenesis Metabolic Engineering 59 (2020) 119-130\r
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Zheng Y, Chen JC, Ma YM,Chen GQ. Engineering Biosynthesis of Polyhydroxyalkanoates (PHA) for Diversity and Cost Reduction. Metabolic Engineering 58 (2020) 82-93\r
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Zheng Y, Meng FK, Wei WJ; Sun Z; Lou CB andChen GQ.A Tight Cold-inducible Switch Built by Coupling Thermosensitive Transcriptional and Proteolytic Regulatory Parts. Nucleic Acids Research 47 (21) e137 (2019) doi: 10.1093/nar/gkz785 (2019)\r
\r
Ye JW, Hu DK, Yin J, Huang WZ, Xiang RJ, Zhang LZ, Wang X, Han JN,Chen GQ. Stimulus Response-based Fine-Tuning of Polyhydroxyalkanoate Pathway in Halomonas. Metabolic Engineering 57 (2019) 85-95\r
\r
Wang Y, Ling C, Chen Y, Jiang XR andChen GQ, Microbial Engineering for Easy Downstream Processing. Biotechnology Advances 37 (2019) 107365. 10.1016/j.biotechadv.2019.03.004\r
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Shen R, Ning ZY, Lan YX, Chen JC andChen GQ. Manipulation of Polyhydroxyalkanoate Granular sizes in Halomonas bluephagenesis. Metabolic Engineering 54 (2019) 117-126.\r
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Chen Y, Chen XY, Du HT, Zhang X, Ma YM, Chen JC, Ye JW, Jiang XR,Chen GQ. Chromosome Engineering the TCA Cycle in Halomonas bluephagenesis for Production of Copolymers of 3-Hydroxybutyrate and 3-Hydroxyvalerate (PHBV). Metabolic Engineering 54 (2019) 69-82\r
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Ling C, Qiao GQ, Shuai BW, Song KN, Jiang XR,Chen GQ. Engineering Self-flocculating Halomonas campaniensis for Wastewaterless Open and Continuous Fermentation. Biotechnology and Bioengineering 116 (2019) 805-815\r
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Li MY, Chen XB, Che XM, Zhang HQ, Wu LP, Du HT andChen GQ. Engineering Pseudomonas entomophila for Synthesis of Copolymers of 3-Hydroxybutyrate and Medium-chain-length 3-Hydroxyalkanoates. Metabolic Engineering 52 (2018) 253-262\r
\r
Ling C, Qiao GQ, Shuai BW, Olavarria K, Yin J, Xiang RJ, Shen YH, Song KN, Guo YY,Chen GQ. Engineering NADH/NAD+ Ratio in Halomonas bluephagenesis for Enhanced Production of Polyhydroxyalkanoates (PHA). Metabolic Engineering 49 (2018) 275-286.\r
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Wei DX, Dao JW,Chen GQ. Micro-Ark for Cells: Highly Open Porous Polyhydroxyalkanoate Microspheres as Injectable Scaffolds for Tissue Regeneration. Advanced Materials 30 (2018) 1802273 DOI: 10.1002/adma.201802273\r
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Qin Q, Ling C, Zhao YQ, Yang T, Yin J, Guo YY andChen GQ. CRISPR/Cas9 Editing Genome of Extremophile Halomonas spp. Metabolic Engineering 47 (2018) 219-229\r
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Ye JW, Hu DK, Che XM, Jiang XR, Li T, Chen JC, Zhang HQ,Chen GQ. Engineering of Halomonas bluephagenesis for Low Cost Production of Poly(3-hydroxybutyrate-co-4-hydroxybutyrate) from Glucose. Metabolic Engineering 47 (2018) 143-152\r
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Chen GQand Jiang XR. Next Generation Industry Biotechnology Based on Exremophiles. Current Opinion in Biotechnology 50 (2018) 94-100\r
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Zhang XC, Guo YY, Liu X, Chen XG, Wu Q,Chen GQ. Engineering Cell Wall Synthesis Mechanism for Enhanced PHB Accumulation in E. coli. Metabolic Engineering 45 (2018) 32-42\r
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Ouyang PF, Wang H, Hajnal I, Wu W. Guo YY andChen GQ. Increasing Oxygen Availability for Improving PHB Production by Halomonas. Metabolic Engineering 45 (2018) 20-31\r
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Chen GQand Jiang XR. Engineering Microorganisms for Improving Polyhydroxyalkanoate Biosynthesis. Current Opinion in Biotechnology 53 (2018) 20-25

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