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Faculty and staff
Doctoral tutor
· botany
· Zoology
· microbiology
· ecology
Master Tutor
· botany
· Zoology
· microbiology
· ecology
Master Tutor > microbiology  
Mingyu Wang
Phone number: 0531-88362362
Fax number: 
E-mail: wangmingyu@sdu.edu.cn
Title: Associate Professor

Education

Ph.D. 2003/08-2010/10 Department of Biochemistry, Microbiology and Molecular Biology, The Pennsylvania State University

B.S. 1999/09-2003/06 School of Life Sciences, Peking University

Work experience

2013/08 - Today Associate Professor, School of Life Sciences, Shandong University

2011/07- 2013/07 Assistant Professor, School of Life Sciences, Shandong University

2010/10- 2011/04 Postdoctoral Assistant, Department of Biochemistry, Microbiology and Molecular Biology, The Pennsylvania State University

Research fields

1. Bacterial antimicrobial resistance mechanisms and removal

2.Microbial physiology of cellulase-producing fungi and bacteria (Cellulase synthesis regulation mechanism and signal transduction) and biochemistry of cellulases

3. Fermentation technology and engineering

Research grants

1.2016.12-2018.12“Rational design, preparation and application of highly efficient cellulase preparations”,Shandong Province Key Research and Development Program, principal investigator

2.2015.1-2017.12 “Pollution of antibiotics and antibiotic resistance genes in wastewater treatment systems, and enhanced removal mechanisms”,Fundamental Research Funds of Shandong University, co-principal investigator

3.2013.1-2015.12,“Function and properties of Ech hydrogenase complex in Clostridium thermocellum”, National Science Foundation of China, principal investigator

4.2014.1-2016.12, “Bioconversion lignocellulose to effective components of gasoline and diesel ”, the National Key Technology R&D Program of China, principal investigator

5.2012.7-2015.7, “Properties of Ech hydrogenase in Clostridium thermocellum”,Natural Science Foundation of Shandong Province, principal investigator

6.2013.12-2015.12,“Distribution and properties of hydrogenases in Clostridium thermocellum”,Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry, principal investigator

7.2011.10-2013.12,“Hydrogen production mechanisms of Clostridium thermocellum”,Fundamental Research Funds of Shandong University, principal investigator

8.2014.4-2016.6,“Strain and production of cocktail cellulases, and sugar producing technology from sweet potato residues”, participant

9.2012.3-2013.12, “Preparation of cellulase hyper-yielding strains, and optimization of cellulase production”, the National Key Technology R&D Program of China, participant

10.2012.11-2015.12, “Preparation of new cellulase cocktails”,the National High-Tech R&D Program of China, participant

11.2013.1-2015.12,“Research and demonstration of key technologies for 10-thousand ton level cellulosic ethanol production”,National Energy Applied Technology Research and Demonstration Project, participant

12.2014.10-2016.12, “Preparation and application of novel lignocellulase cocktails”,Shandong Scientific and Technology Project, participant

13.2015.07-2017.09,“Research and application of advanced enzyme production”,Key Science and Technology Program of Shandong Province, participant

Publication

1. Wu H, Wang M, Liu Y, Wang X, Wang Y, Lu J, Xu H. 2016. Data on the phylogenetic typing, integron gene cassette array analysis, multi-drug resistance analysis and correlation between antimicrobial resistance determinants in Klebsiella strains. Data Brief. 8: 1289-1294.

2. Wang M, Zhao Q, Li L, Niu K, Li Y, Wang F, Jiang B, Liu K, Jiang Y, Fang X. 2016. Contributing factors in the improvements of cellulosic H2 production in Clostridium thermocellum/Thermoanaerobacterium co-cultures. Appl. Microbiol. Biotechnol. 100(19): 8607-8620.(5 yr impact factor 3.882)

3. Liu R, Wang X, Zhang Y, Wang M, Gao M, Wang S. 2016. Optimization of operation conditions for the mitigation of nitrous oxide (N2O) emissions from aerobic nitrifying granular sludge system. Environ. Sci. Pollut. Res. 23(10): 9518-9528.(5 yr impact factor 2.876)

4. Wu H, Wang M, Liu Y, Wang X, Wang Y, Lu J, Xu H. 2016. Characterization of antimicrobial resistance in Klebsiella species isolated from chicken broilers. Int. J. Food Microbiol. 232: 95-102.(5 yr impact factor 4.198)

5. Gao M, Yang S, Wang M, Wang X. 2016. Nitrous oxide emissions from an aerobic granular sludge system treating low-strength ammonium wastewater. J. Biosci. Bioeng. doi: 10.1016/j.jbiosc.2016.04.004.(5 yr impact factor 2.058)

6. Jiang B, Zhang R, Feng D, Wang F, Liu K, Jiang Y, Niu K, Yuan Q, Wang M, Wang H, Zhang Y, Fang X. 2016. A Tet-on and Cre-loxP based genetic engineering system for convenient recycling of selection markers in Penicillium oxalicum. Front. Microbiol. 7: 486.(5 yr impact factor 4.36)

7. Wang F, Jiang Y, Guo W, Niu K, Zhang R, Hou S, Wang M, Yi Y, Zhu C, Jia C, Fang X. 2016. An environmentally friendly and productive process for bioethanol production from potato waste. Biotechnol. Biofuels 9:50. (5 yr impact factor 7.398)

8. Liu K, Dong Y, Wang F, Jiang B, Wang M, Fang X. 2016. Regulation of cellulase expression, sporulation and morphogenesis by velvet family proteins in Trichoderma reesei. Appl. Microbiol. Technol. 100(2): 769-779.(5 yr impact factor 3.882)

9. Wang M, Han L, Liu S, Zhao X, Yang J, Loh SK, Sun X, Zhang C, Fang X. 2015. A Weibull statistics-based lignocellulose saccharification model and a built-in parameter accurately predict lignocellulose hydrolysis performance. Biotechnol. J. 10(9):1424-1433. (5 yr impact factor 3.678)

10. Wang F, Liu K, Han L, Jiang B, Wang M, Fang X. 2015. Function of a p24 heterodimer in morphogenesis and protein transport in Penicillium oxalicum. Sci. Rep. 5:11875.(5 yr impact factor 5.525)

11. Wang M, Yang H, Zhang M, Liu K, Wang H, Luo Y, Fang X. 2015. Functional analysis of Trichoderma reesei CKIIα2, a catalytic subunit of casein kinase II. Appl. Microbiol. Biotechnol. 99(14): 5929-5938.(5 yr impact factor 3.882)

12. Wang M, Dong Y, Zhao Q, Wang F, Liu K, Jiang B, Fang X. 2014. Identification of the role of a MAP kinase Tmk2 in Hypocrea jecorina (Trichoderma reesei). Sci. Rep. 4:6732.(5 yr impact factor 5.597)

13. Suharti S, Wang M, de Vries S, Ferry JG. 2014. Characterization of the RnfB and RnfG Subunits of the Rnf Complex from the Archaeon Methanosarcina acetivorans. PLoS ONE. 9(5): e97966.(5 yr impact factor 3.702)

14. Wang F, Liang Y, Wang M, Yang H, Liu K, Zhao Q, Fang X. 2013. Functional diversity of the p24γ homologue Erp reveals physiological differences between two filamentous fungi. Fungal Genet. Biol. 61:15-22.(5 yr impact factor 3.379)

15. Wang M, He D, Liang Y, Liu K, Jiang B, Wang F, Hou S, Fang X. 2013. Factors involved in the response to improvement of agitation during cellulase production from Penicillium decumbens JUA10-1. J. Ind. Microbiol. Biotechnol. 40(9): 1077-1082.(5 yr impact factor 2.873)

16. Wang M, Zhao Q, Yang J, Jiang B, Wang F, Liu K, Fang X. 2013. A mitogen-activated protein kinase Tmk3 participates in high osmolarity resistance, cell wall integrity maintenance and cellulase production regulation in Trichoderma reesei. PLoS ONE. 8(8): e72189. (5 yr impact factor 4.015)

17. Wang M, Mu Z, Wang J, Hou S, Han L, Dong Y, Xiao L, Xia R, Fang X. 2013. The identification of and relief from Fe3+ inhibition for both cellulose and cellulase in cellulose saccharification catalyzed by cellulases from Penicillium decumbens. Bioresour. Technol. 133: 507-512. (5 yr impact factor 5.600)

18. Wang M, Liu K, Dai L, Zhang J, Fang X. 2013. The structural and biochemical basis for cellulose biodegradation. J. Chem. Technol. Biot. 88(4): 491-500. (5 yr impact factor 2.573)

19. Zhang J, Wang M, Gao M, Fang X, Yano S, Qin S, Xia R. 2013. Efficient acetone-butanol-ethanol production from corncob with a new pretreatment technology - wet disk milling. Bioenerg. Res. 6(1): 35-43.(5 yr impact factor 4.486)

20. Wang M, Li Z, Fang X, Wang L, Qu Y. 2012. Cellulolytic enzyme production and enzymatic hydrolysis for second-generation biofuel production. Adv. Biochem. Eng. Biotechnol. 128:1-24.(5 yr impact factor 3.537)

21. Wang M, Tomb JF, Ferry JG. 2011. Electron transport in acetate-grown Methanosarcina acetivorans. BMC Microbiol. 11: 165.(5 yr impact factor 3.375)

22. Doerfert SN, Reichlen M, Iyer P, Wang M, Ferry JG. 2009. Methanolobus zinderi sp. nov., a methylotrophic methanogen isolated from a deep subsurface coal seam. Int. J. Syst. Evol. Microbiol. 59(Pt 5): 1064-1069.(5 yr impact factor 1.319)


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