讲师南开大学生命科学学院
教师简介

杨超,男,33岁,197912月出生,现为南开大学讲师,任职于生命科学学院宋存江教授领导的研究组,主要从事应用与环境微生物学方面的研究工作。20056月毕业于南开大学微生物学专业,理学硕士;20096月毕业于中国科学院动物研究所生物化学与分子生物学专业,理学博士,从事应用与环境微生物方面的研究工作;200910月,进入南开大学生命科学学院微生物催化研究室开展博士后研究工作,研究方向为微生物分子生态。预计每年工作10个月,主要负责本研究的总体设计、algAphaC基因敲除菌株的构建和发酵试验。多年来一直从事应用与环境微生物方面的研究工作,在攻读博士学位期间,参与了多项国家高新技术863课题的相关研究工作,积累了丰富的科研经验,具有非常强的科研创新能力。博士论文以微生物降解有机磷农药为研究方向,出色地完成了降解菌的分离鉴定,降解基因的克隆表达、基因工程菌株的构建等方面的研究工作,取得了一批具有重要理论意义和应用价值的研究成果。2006年至今,申请人已发表了23SCI论文,其中第一作者13篇,第二作者7篇,总影响因子达到72。论文发表情况如下:Appl Environ Microbiol3篇;Environ Sci Technol4篇;Biotechnol Bioeng1篇;FEMS Microbiol Lett2篇;J Agric Food Chem4篇;Biotechnol Lett1篇;Biodegradation2篇;Bioresour Technol1篇;World J Microbiol Biotechnol1篇。Int J Environ Pollut1篇;Polym Test1篇;J Bacteriol2篇。

SCI论文发表情况(2006年至今,已发表SCI论文23篇,其中第一作者13篇,第二作者7篇,总影响因子72

[1] Chao Yang, Wei Zhang, Ruihua Liu, Qiang Li, Baobin Li, Shufang Wang, Cunjiang Song, Chuanling Qiao, Ashok Mulchandani (2011) Phylogenetic diversity and metabolic potential of activated sludge microbial communities in full-scale wastewater treatment plants. Environ Sci Technol 45: 74087415 (IF=4.825)

[2] Chao Yang, Cunjiang Song, Roland Freudl, Ashok Mulchandani, Chuanling Qiao (2010) Twin-arginine translocation of methyl parathion hydrolase in Bacillus subtilis. Environ Sci Technol 44: 7607–7612 (IF=4.825)

[3] Chao Yang, Cunjiang Song, Ashok Mulchandani, Chuanling Qiao (2010) Genetic engineering of Stenotrophomonas sp. strain YC-1 to possess a broader substrate range for organophosphates. J Agr Food Chem 58: 6762–6766 (IF=2.816)

[4] Yulan Yuan, Chao Yang, Cunjiang Song, Hong Jiang, Ashok Mulchandani, Chuanling Qiao (2010) Anchorage of GFP fusion on the cell surface of Pseudomonas putida. Biodegradation 22:51–61 (IF=2.012) (co-1st author)

[5] Jijian Yang, Chao Yang, Chuanling Qiao (2010) Overexpression of protein disulfide isomerase DsbA enhanced detoxification of organophosphates and enhanced detectability in the environment following degradation of pesticide residues. World J Microb Biot 27: 785–790 (IF=1.214)

[6] Lin Li, Chao Yang, Yaqi He, Chuanling Qiao, Junxin Liu (2011) Simultaneous removal of parathion and methyl parathion by genetically engineered Escherichia coli in a biofilter treating polluted air. Int J Environ Pollut 45 (1-3): 3–14 (IF=0.626)

[7] Wenbin Guo, Jian Tao, Chao Yang, Qiang Zhao, Cunjiang Song, Shufang Wang (2010) The rapid evaluation of material biodegradability using an improved ISO 14852 method with a microbial community. Polym Test 29: 832–839 (IF=2.016)

[8] Chao Yang, Roland Freudl, Chuanling Qiao, Ashok Mulchandani (2010) Cotranslocation of methyl parathion hydrolase to the periplasm and of organophosphorus hydrolase to the cell surface of Escherichia coli by the Tat pathway and ice nucleation protein display system. Appl Environ Microb 76: 434–440 (IF=3.778)

[9] Chao Yang, Roland Freudl, Chuanling Qiao (2009) Export of methyl parathion hydrolase to the periplasm by the twin-arginine translocation pathway in Escherichia coli. J Agr Food Chem 57: 8901–8905 (IF=2.816)

[10] Zheng Liu, Chao Yang, Hong Jiang, Ashok Mulchandani, Wilfred Chen, Chuanling Qiao (2009) Simultaneous degradation of organophosphates and 4-substituted phenols by Stenotrophomonas species LZ-1 with surface-displayed organophosphorus hydrolase. J Agr Food Chem 57: 6171–6177 (IF=2.816)

[11] Heng Zhang, Chao Yang, Qiao Zhao, Chuanling Qiao (2009) Development of an autofluorescent organophosphates-degrading Stenotrophomonas sp. with dehalogenase activity for the biodegradation of hexachlorocyclohexane (HCH). Bioresource Technol 100: 3199–3204 (IF=4.365)

[10] Zheng Liu, Chao Yang, Hong Jiang, Ashok Mulchandani, Wilfred Chen, Chuanling Qiao (2009) Simultaneous degradation of organophosphates and 4-substituted phenols by Stenotrophomonas species LZ-1 with surface-displayed organophosphorus hydrolase. J Agr Food Chem 57: 6171–6177 (IF=2.816)

[11] Heng Zhang, Chao Yang, Qiao Zhao, Chuanling Qiao (2009) Development of an autofluorescent organophosphates-degrading Stenotrophomonas sp. with dehalogenase activity for the biodegradation of hexachlorocyclohexane (HCH). Bioresource Technol 100: 3199–3204 (IF=4.365)

[12] Chao Yang, Yaran Zhu, Jijian Yang, Zheng Liu, Chuanling Qiao, Ashok Mulchandani, Wilfred Chen (2008) Development of an autofluorescent whole-cell biocatalyst by displaying dual functional moieties on Escherichia coli cell surfaces and construction of a coculture with organophosphate-mineralizing activity. Appl Environ Microb 74: 7733–7739 (IF=3.778)

[13] Chao Yang, Qiao Zhao, Zheng Liu, Qiyun Li, Chuanling Qiao, Ashok Mulchandani, Wilfred Chen (2008) Cell surface display of functional macromolecule fusions on Escherichia coli for development of an autofluorescent whole-cell biocatalyst. Environ Sci Technol 42: 6105–6110 (IF=4.825)

[14] Chao Yang, Ning Cai, Ming Dong, Hong Jiang, Jinming Li, Chuanling Qiao, Ashok Mulchandani, Wilfred Chen (2008) Surface display of MPH on Pseudomonas putida JS444 using ice nucleation protein and its application in detoxification of organophosphates. Biotechnol Bioeng 99: 30–37 (IF=3.7)

[15] Lin Li, Chao Yang, Wensheng Lan, Shan Xie, Chuanling Qiao, Jiuxin Liu (2008) Removal of methyl parathion from artificial off-gas using a bioreactor containing a constructed microbial consortium. Environ Sci Technol 42: 2136–2141 (IF=4.825) (co-1st author)

[16] Jijian Yang, Chao Yang, Hong Jiang, Chuanling Qiao (2008) Overexpression of methyl parathion hydrolase and its application in detoxification of organophosphates. Biodegradation 19: 831–839 (IF=2.012)

[17] Heng Zhang, Chao Yang, Chaokun Li, Lin Li, Qiao Zhao, Chuanling Qiao (2008) Functional assembly of a microbial consortium with autofluorescent and mineralizing activity for the biodegradation of organophosphates. J Agr Food Chem 56: 7897–7902 (IF=2.816)

[18] Chao Yang, Ming Dong, Yulan Yuan, Yao Huang, Xinmin Guo, Chuanling Qiao (2007) Reductive transformation of parathion and methyl parathion by Bacillus sp. Biotechnol Lett 29: 487–493 (IF=1.768)

[19] Hong Jiang, Chao Yang, Hong Qu, Zheng Liu, Q. S. Fu, Chuanling Qiao (2007) Cloning of a novel aldo-keto reductase gene from Klebsiella sp. strain F51-1-2 and its functional expression in Escherichia coli. Appl Environ Microb 73: 4959–4965 (IF=3.778) (co-1st author)