Upload Avatar (500 x 500)
Jianzhong Liu
lssljz@mailsysu.edu.cn
Chinese, English
Guangdong
Sun Yat-Sen University
Life Sciences
  • 1982.9~1986.7 Bachelor in Microbial Engineering: South China University of Technology
  • 1986.9~1989.7 Master in Industrial Fermentation: South China University of Technology
  • 1998.7~2001.7 PhD in Science: Sun Yat-sen University
  • Director of the Institute of Synthetic Biology, School of Life Sciences, Sun Yat-sen University
  • Recipient of the National Natural Science Second Prize
  • National Natural Science Second Prize
Microbial Metabolic Engineering and Synthetic Biology
  • Adaptive laboratory evolution and shuffling of Escherichia coli to enhance its tolerance and production of astaxanthin., Lu Q, Zhou XL, Liu JZ, 2022
  • Biosensor-assisted evolution for high-level production of 4-hydroxyphenylacetic acid in Escherichia coli., Shen YP, Pan Y, Niu FX, Liao YL, Huang M, Liu JZ, 2021
  • Enhanced production of pterostilbene in Escherichia coli through directed evolution and host strain engineering., Yan Z-B, Liang J-L, Niu F-X, Shen Y-P and Liu J-Z, 2021
  • Cell-free biosynthesis of chlorogenic acid using a mixture of chassis cell extracts and purified spy-cyclized enzymes., Niu FX, Yan ZB, Huang YB, Liu JZ, 2021
  • ATP and NADPH engineering of Escherichia coli to improve the production of 4-hydroxyphenylacetic acid using CRISPRi., Shen YP, Liao YL, Lu Q, He X, Yan ZB, Liu JZ, 2021
  • Biosensor-guided atmospheric and room-temperature plasma mutagenesis and shuffling for high-level production of shikimic acid from sucrose in Escherichia coli., Niu FX, He X, Huang YB, Liu JZ, 2020
  • 工程微生物合成苯丙酸类化合物及其衍生物的研究进展., 牛福星, 杜云平, 黄远斌, 周荷田,刘建忠, 2020
  • Mixotrophic cultivation of Chlorella for biomass production by using pH-stat culture medium: Glucose-Acetate-Phosphorus (GAP)., Xie ZZ, Lin WT, Liu JZ, Luo JF, 2020
  • Recent advances in metabolically engineered microorganisms for the production of aromatic chemicals derived from aromatic amino acids., Shen YP, Niu FX, Yan ZB, Fong LS, Huang YB, Liu JZ, 2020
  • Enhanced production of pinene by using a cell-free system with modular cocatalysis., Niu FX, Huang YB, Shen YP, Ji LN, Liu JZ, 2020
  • Enhanced astaxanthin production in Escherichia coli via morphology and oxidative stress engineering., Lu Q, Liu JZ, 2019
  • Genomic and transcriptional changes in response to pinene tolerance and overproduction in evolved Escherichia coli., Niu FX, Huang YB, Ji LN, Liu JZ, 2019
  • Combining directed evolution of pathway enzymes and dynamic pathway regulation using a quorum‑sensing circuit to improve the production of 4‑hydroxyphenylacetic acid in Escherichia coli., Shen YP, Fong LS, Yan ZB, Liu JZ, 2019
  • The Applications of Promoter-gene-engineered biosensors., Feng YZ, Xie ZZ, Jiang XL, Li Z, Shen YP, Wang BC, Liu JZ, 2018
  • Enhancing production of pinene in Escherichia coli by using a combination of tolerance, evolution, and modular co-culture engineering., Niu FX, He X, Wu YQ, Liu JZ, 2018
  • Metabolic evolution and a comparative omics analysis of Corynebacterium glutamicum for putrescine production., Li Z, Shen YP, Jiang XL, Feng LS, Liu JZ, 2018
  • Metabolic engineering for the microbial production of isoprenoids: Carotenoids and isoprenoid-based biofuels., Niu FX, Lu Q, Bu YF, Liu JZ, 2017
  • Metabolic engineering of Escherichia coli for producing astaxanthin as the predominant carotenoid., Lu Q, Bu YF, Liu JZ, 2017
  • Transcriptomic changes in response to putrescine production in metabolically engineered Corynebacterium glutamicum., Li Z, Liu JZ, 2017
  • Dynamic control of the mevalonate pathway expression for improved zeaxanthin production in Escherichia coli and comparative proteome analysis., Shen HJ, Cheng BY, Zhang YM, Tang L, Li Z, Bu YF, Li XR, Tian GQ, Liu JZ, 2016
  • Genome engineering Escherichia coli for L-DOPA overproduction from glucose., Wei T, Cheng BY, Liu JZ, 2016
  • High-level expression, purification and large-scale production of l-methionine gamma-lyase from Idiomarina as a novel anti-leukemic drug., Huang KY, Hu HY, Tang YL, Xia FG, Luo XQ, Liu JZ, 2015
  • Engineering of Escherichia coli for lycopene production through promoter engineering., Shen HJ, Hu JJ, Li XR, Liu JZ, 2015
  • Production of L-ornithine from sucrose and molasses by recombinant Corynebacterium glutamicum., Zhang YY, Bu YF, Liu JZ, 2015
  • Metabolic engineering of Escherichia coli to produce zeaxanthin., Li XR, Tian GQ, Shen HJ, Liu JZ, 2015
  • Chromosomal engineering of Escherichia coli for efficient production of Coenzyme Q(10)., Huang MT, Chen YY, Liu JZ, 2014
  • Production of shikimic acid from Escherichia coli through chemically inducible chromosomal evolution and cofactor metabolic engineering., Cui YY, Ling C, Zhang YY, Huang J, Liu JZ, 2014
  • Metabolic engineering of Corynebacterium glutamicum for increasing the production of L-ornithine by increasing NADPH availability., Jiang LY, Zhang YY, Li Z, Liu JZ, 2013
  • Metabolic evolution of Corynebacterium glutamicum for increased production of L-ornithine., Jiang LY, Chen SG, Zhang YY, Liu JZ, 2013
  • Chromosomal evolution of Escherichia coli for the efficient production of lycopene., Chen YY, Shen HJ, Cui YY, Chen SG, Weng ZM, Zhao M, Liu JZ, 2013
  • Engineering of Corynebacterium glutamicum to enhance l-ornithine production by gene knockout and comparative proteomic analysis., Lu DM, Liu JZ, Mao ZW, 2012
  • Optimization of fermentation conditions of the engineered Corynebacterium glutamicum to enhance L-ornithine production by response surface methodology., Lu DM, Jiang LY, Chen LA, Liu JZ, Mao ZW, 2011
  • Multiple strategies for metabolic engineering of Escherichia coli for efficient production of Coenzyme Q(10)., Huang MT, Wang Y, Liu JZ, Mao ZW, 2011
  • Genome shuffling of Propionibacterium shermanii for improving vitamin B12 production and comparative proteome analysis., Zhang Y, Liu JZ, Huang JS, Mao ZW, 2010
Metabolic Engineering Synthetic Biology Microbial Sensors Genome Editing Crispr Cell Factories Terpenoids Aromatic Compounds Promoter Engineering Chromosome Engineering

Contact us

Let's talk!
* Required
* Required
* Required
* Invalid email address
By submitting this form, you agree that IoT ONE may contact you with insights and marketing messaging.
No thanks, I don't want to receive any marketing emails from IoT ONE.
Submit

Thank you for your message!
We will contact you soon.