王劍橋(廣州大學環境科學與工程學院副教授)

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王劍橋,女,博士,1986年3月生,廣州大學環境科學與工程學院副教授、碩士生導師。

基本介紹

  • 中文名:王劍橋
  • 出生日期:1986年3月
  • 職業:教師
  • 畢業院校:日本靜岡大學
  • 學位/學歷:博士
  • 專業方向:污染環境的生物修復技術
  • 職務:副教授、碩士生導師
  • 就職院校:廣州大學環境科學與工程學院
人物經歷,學習經歷,工作經歷,研究方向,學術成果,科研項目,學術論文,榮譽獲獎,
2014年畢業於日本靜岡大學生物科學專業,獲博士學位付嚷戲判
2011年畢業於日本靜岡大學套用生物化學專業,獲碩士學位
2008年畢業於夜民轎瀋陽農業大學園林專業,獲學士學位
2018年3月至今,廣州大學,副教授
2017年10月至2017年12月,日本靜岡大學,學術研究員
2015年鍵捆紙4月至2017年9月,日本靜岡閥朵多大學,JSPS研究員
2015年1月茅乘霸定至2015年3月,日本橫濱國立大學大學,非常勤教員
2014年4月至2014年12月,日本靜岡大學,乘地姜特任助教
污染環境的轎危生物修復技術
Identification of ligninolytic inducing compounds and the clarification of the inducing mechanism(JSPS, 2015-2017)
1) *T. Mori, *J. Wang, Y. Tanaka, K. Nagai, H. Kawagishi, H. Hirai (2017) Bioremediation of the neonicotinoid insecticide clothianidin by the white-rot fungusPhanerochaete sordida,Journal of Hazardous Materials, 321, 586-590.
2) *J. Wang,*T. Suzuki, H. Dohra, S. Takigami, H. Kako, A. Soga, I. Kamei, T. Mori, H. Kawagishi, H. Hirai (2016) Analysis of ethanol fermentation mechanism of ethanol producing white-rot fungusPhlebiasp. MG-60 by RNA-seq,BMC Genomics, 17, 616.
3)J. Wang, S. Hirabayashi, T. Mori, H. Kawagishi, H. Hirai (2016) Improvement of ethanol production by recombinant expression of pyruvate decarboxylase in the white-rot fungusPhanerochaete sordidaYK-624,Journal of Bioscience and Bioengineering, 122, 17-21.
4) M. Arimoto, K. Yamagishi,J. Wang, K. Tanaka, T. Miyoshi, I. Kamei, R. Kondo, T. Mori, H. Kawagishi, H. Hirai (2015) Molecular breeding of lignin-degrading brown-rot fungusGloeophyllum trabeumby homologous expression of laccase gene,AMB Express, 5, 81.
5) *S. Hirabayashi, *J. Wang, H. Kawagishi, H. Hirai (2015) Improving xylitol production through recombinant expression of xylose reductase in the white-rot fungusPhanerochaete sordidaYK-624,Journal of Bioscience and Bioengineering, 120, 6-8.
6) *Y. Yamada, *J. Wang, H. Kawagishi, H. Hirai (2014) Improvement of ligninolytic properties by recombinant expression of glyoxal oxidase gene in hyper lignin-degrading fungusPhanerochaete sordidaYK-624,Bioscience, Biotechnology, and Biochemistry, 78, 2128-2133.
7)J. Wang, Y. Yamada, A. Notake, Y.Todoroki, T. Tokumoto, J. Dong, P. Thomas, H. Hirai, H. Kawagishi (2014) Metabolism of bisphenol A by hyper lignin-degrading fungusPhanerochaete sordidaYK-624 under non-ligninolytic condition,Chemosphere, 109, 128-133.
8)J. Wang, R. Yamamoto, Y. Yamamoto, T, Tokumoto, J. Dong, P. Thomas, H. Hirai, H. Kawagishi (2013) Hydroxylation of bisphenol A by hyper lignin-degrading fungusPhanerochaete sordidaYK-624 under nonligninolytic condition.Chemosphere, 93, 1419-1423.
9)J. Wang, Y. Yamamoto, H. Hirai, H. Kawagishi (2013) Dimerization of Bisphenol A by hyper lignin degrading fungusPhanerochaete sordidaYK-624 under ligninolytic condition.Current Microbiology, 66, 544-547.
10)J. Wang, N. Majima, H. Hirai, H. Kawagishi (2012) Effective removal of endocrine disrupting compounds by lignin peroxidase from the white-rot fungusPhanerochaete sordidaYK-624,Current Microbiology, 64, 300-303.
11)J. Wang, H. Hirai, H. Kawagishi (2012) Biotransformation of acetamiprid by the white-rot fungusPhanerochaete sordidaYK-624.Applied Microbiology and Biotechnology,93, 831-835.
12)J. Wang, M. Ogata, H. Hirai, H. Kawagishi (2011) Detoxification of aflatoxin B1 by manganese peroxidase from the white-rot fungusPhanerochaete sordidaYK-624,FEMS Microbiology Letters, 314, 164-169.
5) *S. Hirabayashi, *J. Wang, H. Kawagishi, H. Hirai (2015) Improving xylitol production through recombinant expression of xylose reductase in the white-rot fungusPhanerochaete sordidaYK-624,Journal of Bioscience and Bioengineering, 120, 6-8.
6) *Y. Yamada, *J. Wang, H. Kawagishi, H. Hirai (2014) Improvement of ligninolytic properties by recombinant expression of glyoxal oxidase gene in hyper lignin-degrading fungusPhanerochaete sordidaYK-624,Bioscience, Biotechnology, and Biochemistry, 78, 2128-2133.
7)J. Wang, Y. Yamada, A. Notake, Y.Todoroki, T. Tokumoto, J. Dong, P. Thomas, H. Hirai, H. Kawagishi (2014) Metabolism of bisphenol A by hyper lignin-degrading fungusPhanerochaete sordidaYK-624 under non-ligninolytic condition,Chemosphere, 109, 128-133.
8)J. Wang, R. Yamamoto, Y. Yamamoto, T, Tokumoto, J. Dong, P. Thomas, H. Hirai, H. Kawagishi (2013) Hydroxylation of bisphenol A by hyper lignin-degrading fungusPhanerochaete sordidaYK-624 under nonligninolytic condition.Chemosphere, 93, 1419-1423.
9)J. Wang, Y. Yamamoto, H. Hirai, H. Kawagishi (2013) Dimerization of Bisphenol A by hyper lignin degrading fungusPhanerochaete sordidaYK-624 under ligninolytic condition.Current Microbiology, 66, 544-547.
10)J. Wang, N. Majima, H. Hirai, H. Kawagishi (2012) Effective removal of endocrine disrupting compounds by lignin peroxidase from the white-rot fungusPhanerochaete sordidaYK-624,Current Microbiology, 64, 300-303.
11)J. Wang, H. Hirai, H. Kawagishi (2012) Biotransformation of acetamiprid by the white-rot fungusPhanerochaete sordidaYK-624.Applied Microbiology and Biotechnology,93, 831-835.
12)J. Wang, M. Ogata, H. Hirai, H. Kawagishi (2011) Detoxification of aflatoxin B1 by manganese peroxidase from the white-rot fungusPhanerochaete sordidaYK-624,FEMS Microbiology Letters, 314, 164-169.

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