1.Xian Zhang, Rongzhen Zhang, Teng Bao, Zhiming Rao*, Taowei Yang, Meijuan Xu, Zhenghong Xu, Huazhong Li*, Shangtian Yang. The rebalanced pathway significantly enhances acetoin production by disruption of acetoin reductase gene and moderate-expression of a new water-forming NADH oxidase in Bacillus subtilis. Metabolic Engineering. 2014, 23: 34-41. (SCI, IF 8.201)
2.Man Z, Rao Z*, Xu M, Guo J, Yang T, Zhang X, Xu Z. Improvement of the intracellular environment for enhancing l-arginine production of Corynebacterium glutamicum by inactivation of H2O2-forming flavin reductases and optimization of ATP supply. Metab Eng, 2016, 38:310-321. (SCI, IF 8.201)
3.Shao Minglong, Zhang Xian, Rao Zhiming*, Xu Meijuan, Yang Taowei, Li Hui, Xu Zhenghong, Yang Shangtian. Efficient testosterone production by engineered Pichia pastoris co-expressing human 17β-hydroxysteroid dehydrogenase type 3 and
Saccharomyces cerevisiae glucose 6-phosphate dehydrogenase with NADPH regeneration. Green Chem, 2016, 18:1774-1784. (SCI, IF 8.506)
Zhang, Zhenghong Xu, Shangtian Yang. Efficient one-step Preparation of γ-
Aminobutyric Acid from Glucose without Exogenous Cofactor by the Designed Corynebacterium glutamicum. Green Chemistry. 2014, 16: 4190-4197. (SCI, IF 8.506)
5.Taowei Yang, Zhiming Rao*, Xian Zhang, Meijuan Xu, Zhenghong Xu, Shang-Tian Yang. Metabolic engineering strategies for acetoin and 2,3-butanediol production: Advances and prospects, Critical Reviews in Biotechnology, 2017, 37(8): 990-1005. (SCI, IF 7.51)
6.Yang Taowei, Rao Zhiming*, Hu Guiyuan, Zhang Xian, Liu Mei, Dai Yue, Xu Meijuan, Xu Zhenghong, Yang Shangtian. Metabolic engineering of Bacillus subtilis for redistributing the carbon flux to 2,3-butanediol by manipulating NADH levels. Biotechnology for Biofuels. 2015, 8:129. (SCI, IF 6.44)
7.Junxian Zheng, Taowei Yang, Junping Zhou, Meijuan Xu, Xian Zhang, Zhiming Rao*, Shangtian Yang. Efficient production of D-amino acid oxidase in Escherichia coli by a trade-off between its expression and biomass using N-terminal. Bioresource Technology, 2017, 243: 716-723. ( SCI, IF 5.651)
8.Man Z, Xu M, Rao Z*, Guo J, Yang T, Zhang X, et al. Systems pathway engineering of Corynebacterium crenatum for improved L-arginine production. Sci Rep. 2016;6:28629.
9.Zheng, J. X.; Yang, T. W.; Zhou, J. P.; Xu, M. J.; Zhang, X.; Rao, Z. M. Elimination of a Free Cysteine by Creation of a Disulfide Bond Increases the Activity and Stability of Candida boidinii Formate Dehydrogenase. Appl Environ Microbiol, 2017, 83(2). (SCI, IF 3.823)
10.Yang Taowei, Rao Zhiming*, Zhang Xian, Xu Meijuan, Xu Zhenghong, Yang Shangtian. Enhanced 2,3-butanediol production from biodiesel-derived glycerol by engineering of cofactor regeneration and manipulating carbon flux in Bacillus amyloliquefaciens. Microbial Cell Factories. 2015, 14:122. (SCI, IF 3.744)
11.Xu Meijuan, Qin Jingru, Rao Zhiming*, You Hengyi, Zhang Xian, Yang Taowei, Wang Xiaoyuan, Xu Zhenghong*. Effect of Polyhydroxybutyrate (PHB) storage on L-arginine production in recombinant Corynebacterium crenatum using coenzyme regulation. Microbial Cell Factories. 2016, 15: 15. (SCI, IF 3.744)
12.WQ Zhang, ML Shao, ZM Rao*, MJ Xu, X Zhang, TW Yang, H Li, ZH Xu*. Bioconversion of 4-androstene-3, 17-dione to androst-1,4-diene-3, 17-dione by
recombinant Bacillus subtilis expressing ksdd gene encoding 3-ketosteroid-△1-dehydrogenase from Mycobacterium neoaurum JC-12. Journal of Steroid Biochemistry and Molecular Biology. 2013, 135: 36-42. (SCI, IF 3.98)