Chengqiang Wang
发布时间: 2018-06-04                 浏览次数: 31


Chengqiang Wang, Lecturer, Ph.D., 1986chengqiang@163.com, 15715381831

Research Interests:

Microbiology, Molecular genetics, Metabolic engineering and synthetic biology.

Scientific research: 1.The molecular mechanism of PGPR. 2.The research of microbial cell factory.

Education:

2005-2009 Shandong University at Weihai, BSc of Biotechnology

2009-2014Shandong University, PhD of Microbiology

2014-nowLecturer, Collage of Life Sciences, Shandong Agricultural University

Teaching Courses:

General Microbiology, Metabolic Engineering and Synthetic Biology, Genetics and Breeding of Microbiology, and Microbiology of Environmental Engineering

Selected Publications:

1. Chengqiang Wang1, Yanwei Li1, Chenxi Qiu1, Shihao Wang, Jinjin Ma, Yu Shen, Qingzhu Zhang, Binghai Du, Yanqin Ding*, Xiaoming Bao*. Identification of important amino acids in Gal2p for improving the L-arabinose transport and metabolism in Saccharomyces cerevisiae. Frontiers in Microbiology, 2017, 8: 1391.

2. Chengqiang Wang1, Jianzhi Zhao1, Chenxi Qiu, Shihao Wang, Yu Shen, Binghai Du, Yanqin Ding*, Xiaoming Bao*. Coutilization of D-Glucose, D-Xylose, and L-Arabinose in Saccharomyces cerevisiae by Coexpressing the Metabolic Pathways and Evolutionary Engineering. BioMed Research International, 2017, 2017: 5318232.

3. Chengqiang Wang1, Xiaoming Bao1, Yanwei Li, Chunlei Jiao, Jin Hou, Qingzhu Zhang, Weixin Zhang, Weifeng Liu, Yu Shen*. Cloning and characterization of heterologous transporters in Saccharomyces cerevisiae and identification of important amino acids for xylose utilization. Metabolic Engineering, 2015, 30: 79-88.

4. Chengqiang Wang1, Yu Shen1, Jin Hou, Fan Suo, Xiaoming Bao*. An assay for functional xylose transporters in Saccharomyces cerevisiae. Analytical Biochemistry, 2013, 442(2): 241-248.

5. Chengqiang Wang, Yu Shen, Yanyan Zhang, Fan Suo, Jin Hou, Xiaoming Bao*. Improvement of L-arabinose fermentation by modifying the metabolic pathway and transport in Saccharomyces cerevisiae. BioMed Research International, 2013, 2013: 461204.

6. Haimeng Guo1, Yanan Yang1, Kai Liu, Wenfeng Xu, Jianyong Gao, Hairong Duan, Binghai Du, Yanqin Ding*, Chengqiang Wang*. Comparative genomic analysis of Delftia tsuruhatensis MTQ3 and the identification of functional NRPS genes for siderophore production. BioMed Research International, 2016, 2016: 3687619.

7. Xiaoyang Hou, Xiaoning Yu, Binghai Du, Kai Liu, Liangtong Yao, Sicheng Zhang, C. Selin, W.G.D. Fernando, Chengqiang Wang*, Yanqin Ding*. A single amino acid mutation in Spo0A results in sporulation deficiency of Paenibacillus polymyxa SC2. Research in Microbiology, 2016, 167(6): 472-479.

8. Chengqiang Wang, Xiuna Hu, Kai Liu, Qihui Hou, Qianqian Yang, Yanqin Ding*, Binghai Du*. Draft Genome Sequence of Bacillus methylotrophicus FKM10, a Plant Growth-Promoting Rhizobacterium Isolated from Apple Rhizosphere. Genome Announcements, 2016, 4(1): e01739-15.

9. Hu Liu1, Chengqiang Wang1, Yuhuan Li1, Kai Liu, Qihui Hou, Wenfeng Xu, Lingchao Fan, Jian Zhao, Jianyu Gou, Binghai Du*, Yanqin Ding*. Complete Genome Sequence of Paenibacillus polymyxa YC0573, a Plant Growth–Promoting Rhizobacterium with Antimicrobial Activity. Genome Announcements, 2017, 5(6): e01636-16.

10. Qihui Hou1, Chengqiang Wang1, Haimeng Guo1, Zhilin Xia, Jiangping Ye, Kai Liu, Yanan Yang, Xiaoyang Hou, Hu Liu, Jun Wang, Binghai Du*, Yanqin Ding*. Draft Genome Sequence of Delftia tsuruhatensis MTQ3, a Strain of Plant Growth-Promoting Rhizobacterium with Antimicrobial Activity. Genome Announcements, 2015, 3(4): e00822-15.

11. Qihui Hou1, Chengqiang Wang1, Xiaoyang Hou1, Zhilin Xia, Jiangping Ye, Kai Liu, Hu Liu, Jun Wang, Haimeng Guo, Xiaoning Yu, Yanan Yang, Binghai Du*, Yanqin Ding*. Draft genome sequence of Brevibacillus brevis DZQ7, a plant growth-promoting rhizobacterium with broad-spectrum antimicrobial activity. Genome Announcements, 2015, 3(4): e00831-15.

12. Jin Hou1, Fan Suo1, Chengqiang Wang, Xiaowei Li, Yu Shen, Xiaoming Bao*. Fine-tuning of NADH oxidase decreases byproduct accumulation in respiration deficient xylose metabolic Saccharomyces cerevisiae. BMC Biotechnology, 2014, 14(1): 13.