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<h1 class="box-heading">SUPERVISORS</h1> | <h1 class="box-heading">SUPERVISORS</h1> | ||
<p><strong>Zhang Lixin</strong>: For the first time in the world, he discovered that the apoptotic kinase ASK1 and the signaling protein 14-3-3 are closely linked to regulate the cancer process. Currently engaged in the construction of natural microbial resource pools of marine microbial strains; screening of active microorganisms and their secondary metabolites using interactive high-throughput techniques</p> | <p><strong>Zhang Lixin</strong>: For the first time in the world, he discovered that the apoptotic kinase ASK1 and the signaling protein 14-3-3 are closely linked to regulate the cancer process. Currently engaged in the construction of natural microbial resource pools of marine microbial strains; screening of active microorganisms and their secondary metabolites using interactive high-throughput techniques</p> | ||
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<p><strong>Zhuang Yingping</strong>:Ph.D. In recent years, she has developed a theoretical method based on parameter correlation analysis in multi-scale fermentation processes and successfully applied in many industrial fermentation products.</p> | <p><strong>Zhuang Yingping</strong>:Ph.D. In recent years, she has developed a theoretical method based on parameter correlation analysis in multi-scale fermentation processes and successfully applied in many industrial fermentation products.</p> | ||
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<p><strong>Wang Qiyao</strong>: Ph.D., mainly engaged in the research on pathogenic mechanism of pathogenic bacteria in marine animals.</p> | <p><strong>Wang Qiyao</strong>: Ph.D., mainly engaged in the research on pathogenic mechanism of pathogenic bacteria in marine animals.</p> | ||
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<p><strong>Tan Gaoyi</strong>: Ph.D., mainly engaged in research on microbial secondary metabolism and metabolic engineering. He has published more than ten papers in famous international journals such as Biotechnology and Bioengineering, ACS Synthetic Biology and Metabolic Engineering. </p> | <p><strong>Tan Gaoyi</strong>: Ph.D., mainly engaged in research on microbial secondary metabolism and metabolic engineering. He has published more than ten papers in famous international journals such as Biotechnology and Bioengineering, ACS Synthetic Biology and Metabolic Engineering. </p> | ||
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<p><strong>Li Youyuan</strong>: Ph.D. Engaged in fermentation process optimization and microbial metabolic regulation research, proteomics research, and served as a teaching. He published many papers in bioinformatics. </p> | <p><strong>Li Youyuan</strong>: Ph.D. Engaged in fermentation process optimization and microbial metabolic regulation research, proteomics research, and served as a teaching. He published many papers in bioinformatics. </p> | ||
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<p><strong>Wu Hui</strong>: Doctor of Engineering, Associate Professor. He is currently the deputy director of China Light Industry Bio-based Materials Engineering Key Laboratory. In recent years, he has been the first author or correspondent author in Metabolic Engineering, Biotechnology Advances, ACS Synthetic Biology, etc. </p> | <p><strong>Wu Hui</strong>: Doctor of Engineering, Associate Professor. He is currently the deputy director of China Light Industry Bio-based Materials Engineering Key Laboratory. In recent years, he has been the first author or correspondent author in Metabolic Engineering, Biotechnology Advances, ACS Synthetic Biology, etc. </p> | ||
<p><strong>Zhou Mian</strong>: Ph.D., Associate Professor. She is engaged in the study of the effects of codon usage on protein expression, folding, and function. The research results were published in journals such as Nature, Molecular Microbiology, and EMBO Reports.</p> | <p><strong>Zhou Mian</strong>: Ph.D., Associate Professor. She is engaged in the study of the effects of codon usage on protein expression, folding, and function. The research results were published in journals such as Nature, Molecular Microbiology, and EMBO Reports.</p> | ||
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<p><strong>Quan Shu</strong>: Professor. Her representative research results published in Elife, Nature Structural & Molecular Biology. The research interest is to establish methods and means to transform the stability of proteins, to analyze the structure and mechanism of molecular chaperone proteins, which are closely related to protein folding.</p> | <p><strong>Quan Shu</strong>: Professor. Her representative research results published in Elife, Nature Structural & Molecular Biology. The research interest is to establish methods and means to transform the stability of proteins, to analyze the structure and mechanism of molecular chaperone proteins, which are closely related to protein folding.</p> | ||
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<p><strong>Cai Menghao</strong>: Ph.D. Associate professor. In recent years, he has published more than 20 papers in SCI in the key journals such as Metabolic Engineering, Biotechnology Advances, ACS Synthetic Biology, Applied and Environmental Microbiology, Biotechnology and Bioengineering. His main research areas are synthetic biology and metabolic engineering of pharmaceutical compounds;</p> | <p><strong>Cai Menghao</strong>: Ph.D. Associate professor. In recent years, he has published more than 20 papers in SCI in the key journals such as Metabolic Engineering, Biotechnology Advances, ACS Synthetic Biology, Applied and Environmental Microbiology, Biotechnology and Bioengineering. His main research areas are synthetic biology and metabolic engineering of pharmaceutical compounds;</p> | ||
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<p><strong>Zuo Peng</strong>: Ph.D. Associate Professor, mainly engaged in the construction and application of nano-enhanced signal amplification systems, the construction of enzyme-catalyzed signal amplification methods, and the construction and application of nano-functionalized microfluidic systems.</p> | <p><strong>Zuo Peng</strong>: Ph.D. Associate Professor, mainly engaged in the construction and application of nano-enhanced signal amplification systems, the construction of enzyme-catalyzed signal amplification methods, and the construction and application of nano-functionalized microfluidic systems.</p> | ||
<p><strong>Xia Jianye</strong>: Ph.D. His main research areas are experimental and numerical simulation studies of flow field characteristics of bioreactors and theoretical and applied techniques of biological process amplification methods based on cell physiological characteristics and reactor flow field characteristics.</p> | <p><strong>Xia Jianye</strong>: Ph.D. His main research areas are experimental and numerical simulation studies of flow field characteristics of bioreactors and theoretical and applied techniques of biological process amplification methods based on cell physiological characteristics and reactor flow field characteristics.</p> | ||
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<p><strong>Bai Yunpeng</strong>: Ph.D. He is mainly engaged in the research and application of novel biocatalytic reactions, protein molecular engineering and bio-chemical nanocomposite catalysis based on high-throughput screening.</p> | <p><strong>Bai Yunpeng</strong>: Ph.D. He is mainly engaged in the research and application of novel biocatalytic reactions, protein molecular engineering and bio-chemical nanocomposite catalysis based on high-throughput screening.</p> | ||
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<p><strong>Zhou Shengmin</strong>: Ph.D. Associate professor, his research areas are the molecular biology of environmental microorganisms, pathogenic microorganisms and industrial microorganisms. Explore many functional genes related to microbial environmental stress, signal transduction and secondary metabolic regulation. </p> | <p><strong>Zhou Shengmin</strong>: Ph.D. Associate professor, his research areas are the molecular biology of environmental microorganisms, pathogenic microorganisms and industrial microorganisms. Explore many functional genes related to microbial environmental stress, signal transduction and secondary metabolic regulation. </p> | ||
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Revision as of 16:32, 17 October 2018