党委研究生工作部 研究生院 学科建设办公室
通讯地址:江苏省镇江市丹徒区长晖路666号
个人邮箱:wangjun@just.edu.cn
邮政编码:212100
办公地点:
传真:
博士,教授,博士生导师,从事生物催化与转化、蚕桑资源利用、桑树病虫害防控等相关教学科研工作,主持国家自然科学基金4项、省部级科研项目8项,以第一或通讯作者发表论文120余篇,其中SCI收录90余篇,获发明专利授权20余件、转让5件。江苏省高校优秀科技创新团队负责人,江苏省高校“青蓝工程”优秀教学团队负责人,科技期刊《Frontiers in Nutrition》副主编、《Scientific Reports》《Sustainability》《中国蚕业》《江苏科技大学学报》(自然科学版)编委,入选江苏省“333工程”第三层次、江苏省高校“青蓝工程”中青年学术带头人、江苏省“六大人才高峰”高层次人才、江苏省高校“青蓝工程”优秀青年骨干教师以及学校首届“深蓝学者”第一层次培养对象,任中国蚕学会理事、资源开发专业委员会副主任委员、教育与科普工作委员会副主任委员,中国昆虫学会昆虫产业化专业委员会委员,江苏省生物化学与分子生物学学会常务理事,江苏省农学类研究生教育指导委员会委员,获江苏省教学成果一等奖、江苏省教学成果二等奖、江苏省研究生教育改革成果二等奖、江苏省科学技术三等奖、中国产学研合作创新成果优秀奖、江苏省高校优秀共产党员、感动江苏教育人物——最美高校教师提名奖、镇江市十大杰出青年、Outstanding Contribution in Reviewing Award等奖项或荣誉,指导学生获全国“挑战杯”大学生课外学术作品竞赛一等奖、中国“挑战杯”大学生创业计划竞赛金奖、全国大学生生命科学创新创业大赛一等奖、全国大学生蚕桑生物技术创新大赛特等奖、江苏省优秀硕士学位论文、江苏省高校本科优秀毕业论文一等奖和优秀团队等国家级奖8项、省部级奖20余项。
(1)生物催化与转化
(2)蚕桑资源利用
(3)桑树病虫害防控
[1] Cai-Feng Yang, Yu Zhou, Yu Zheng, Chang-Long Li, Sheng Sheng, Jun Wang*, Fu-An Wu*. Enzymatic modification of chitosan by cinnamic acids: Antibacterial activity against Ralstonia solanacearum. International Journal of Biological Macromolecules. 2016, 87: 577-585.
[2] An Gong, Dan Zhu, Yi-Yuan Mei, Xiao-Hui Xu, Fu-An Wu, Jun Wang*. Enhanced biocatalysis mechanism under microwave irradiation in isoquercitrin production revealed by circular dichroism and surface plasmon resonance spectroscopy. Bioresource Technology. 2016, 205: 48-57.
[3] Sha-Sha Wang, Zhong-Jian Li, Sheng Sheng, Fu-An Wu, Jun Wang*. Microfluidic biocatalysis enhances the esterification of caffeic acid and methanol under continuous-flow conditions. Journal of Chemical Technology and Biotechnology. 2016, 91(2): 555-562.
[4] Xi Liu†, Xu-Dong Wang†, Na Pang, Wei-Jie Zhu, Xing-Yu Zhao, Fang-Qin Wang, Fu-An Wu, Jun Wang*. APA-style human milk fat analogue from silkworm pupae oil: Enzymatic production and improving storage stability using alkyl caffeates. Scientific Reports. 2015, 5: 17909.
[5] Min Wang, Wei-Wei Wu, Sha-Sha Wang, Xin-Yi Shi, Fu-An Wu, Jun Wang*. Preparation and characterization of a solid acid catalyst from macro fungi residue for methyl palmitate production. BioResources. 2015, 10(3): 5691-5708.
[6] An Gong†, Shuang-Shuang Gu†, Jun Wang*, Sheng Sheng, Fu-An Wu. A peculiar segmented flow microfluidics for isoquercitrin biosynthesis based on coupling of reaction and separation. Bioresource Technology. 2015, 193: 498-506.
[7] Xing-Yu Zhao, Xu-Dong Wang, Xi Liu, Wei-Jie Zhu, Yi-Yuan Mei, Wen-Wen Li, Jun Wang*. Structured lipids enriched with unsaturated fatty acids produced by enzymatic acidolysis of silkworm pupae oil using oleic acid. European Journal of Lipid Science and Technology. 2015, 117(6): 879-889.
[8] Jun Wang, An Gong, Cai-Feng Yang, Qi Bao, Xin-Yi Shi, Bei-Bei Han, Xiang-Yang Wu, Fu-An Wu. An effective biphase system accelerates hesperidinase-catalyzed conversion of rutin to isoquercitrin. Scientific Reports. 2015, 5: 8682.
[9] Jun Wang, Xu-Dong Wang, Xing-Yu Zhao, Xi Liu, Tao Dong, Fu-An Wu. From microalgae oil to produce novel structured triacylglycerols enriched with unsaturated fatty acids. Bioresource Technology. 2015, 184: 405-414.
[10] Jun Wang, Sha-Sha Wang, Zhong-Jian Li, Shuang-Shuang Gu, Xiang-Yang Wu, Fu-An Wu. Ultrasound irradiation accelerates the lipase-catalyzed synthesis of methyl caffeate in an ionic liquid. Journal of Molecular Catalysis B: Enzymatic. 2015, 111(1): 21-28.
[11] Shuang-Shuang Gu, Jun Wang*, Xian-Bin Wei, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Enhancement of lipase-catalyzed synthesis of caffeic acid phenethyl ester in ionic liquid with DMSO co-solvent. Chinese Journal of Chemical Engineering. 2014, 22(11-12): 1314-1321.
[12] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. A novel continuous flow biosynthesis of caffeic acid phenethyl ester from alkyl caffeate and phenethanol in a packed bed microreactor. Bioresource Technology. 2014, 158: 39-47.
[13] Jun Wang, Shuang-Shuang Gu, Na Pang, Fang-Qin Wang, Fei Pang, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Alkyl caffeates improve the antioxidant activity, antitumor property and oxidation stability of edible oil. PLoS ONE. 2014, 9(4): e95909.
[14] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Liu-Qing Yang, Xiang-Yang Wu. Rapid synthesis of propyl caffeate in ionic liquid using a packed bed enzyme microreactor under continuous-flow conditions. Bioresource Technology. 2013, 149: 367–374.
[15] Jun Wang, Guo-Xia Sun, Liang Yu, Fu-An Wu, Xi-Jie Guo. Enhancement of the selective enzymatic biotransformation of rutin to isoquercitrin using an ionic liquid as a co-solvent. Bioresource Technology. 2013, 128: 156–163.
[16] Na Pang†, Shuang-Shuang Gu†, Jun Wang*, Hong-Sheng Cui, Fang-Qin Wang, Xi Liu, Xing-Yu Zhao, Fu-An Wu. A novel chemoenzymatic synthesis of propyl caffeate using lipase-catalyzed transesterification in ionic liquid. Bioresource Technology. 2013, 139: 337–342.
[17] Jun Wang, Ding-Qiang Lu, Qiu-Jun Sun, Hui Zhao, Xiu-Quan Ling, Ping-Kai Ouyang. Reactive extraction and recovery of mono-caffeoylquinic acids from tobacco wastes by trialkylphosphine oxide. Chemical Engineering Science. 2012, 78(8): 53-62.
[18] Jun Wang, Yan-Long Ma, Xiang-Yang Wu, Liang Yu, Rui Xia, Guo-Xia Sun, Fu-An Wu. Selective hydrolysis by commercially available hesperidinase for isoquercitrin production. Journal of Molecular Catalysis B: Enzymatic. 2012, 81(9): 37-42.
[19] Jun Wang, Ding-Qiang Lu, Yao Liang, Hui Zhao, Min Luo, Xiu-Quan Ling, Ping-Kai Ouyang. Isolation of mono-caffeoylquinic acids from tobacco waste using continuous resin-based pre-separation and preparative HPLC. Journal of Separation Science. 2012, 35(10-11): 1379–1387.
[20] 李晶, 王俊*, 张磊霞, 顾双双, 吴福安, 郭跃伟. 离子液体中脂肪酶催化酯类合成的新进展. 有机化学. 2012, 32(7): 1186–1194.
* Corresponding author, †Joint first authors.
[1] Cai-Feng Yang, Yu Zhou, Yu Zheng, Chang-Long Li, Sheng Sheng, Jun Wang*, Fu-An Wu*. Enzymatic modification of chitosan by cinnamic acids: Antibacterial activity against Ralstonia solanacearum. International Journal of Biological Macromolecules. 2016, 87: 577-585.
[2] An Gong, Dan Zhu, Yi-Yuan Mei, Xiao-Hui Xu, Fu-An Wu, Jun Wang*. Enhanced biocatalysis mechanism under microwave irradiation in isoquercitrin production revealed by circular dichroism and surface plasmon resonance spectroscopy. Bioresource Technology. 2016, 205: 48-57.
[3] Sha-Sha Wang, Zhong-Jian Li, Sheng Sheng, Fu-An Wu, Jun Wang*. Microfluidic biocatalysis enhances the esterification of caffeic acid and methanol under continuous-flow conditions. Journal of Chemical Technology and Biotechnology. 2016, 91(2): 555-562.
[4] Xi Liu†, Xu-Dong Wang†, Na Pang, Wei-Jie Zhu, Xing-Yu Zhao, Fang-Qin Wang, Fu-An Wu, Jun Wang*. APA-style human milk fat analogue from silkworm pupae oil: Enzymatic production and improving storage stability using alkyl caffeates. Scientific Reports. 2015, 5: 17909.
[5] Min Wang, Wei-Wei Wu, Sha-Sha Wang, Xin-Yi Shi, Fu-An Wu, Jun Wang*. Preparation and characterization of a solid acid catalyst from macro fungi residue for methyl palmitate production. BioResources. 2015, 10(3): 5691-5708.
[6] An Gong†, Shuang-Shuang Gu†, Jun Wang*, Sheng Sheng, Fu-An Wu. A peculiar segmented flow microfluidics for isoquercitrin biosynthesis based on coupling of reaction and separation. Bioresource Technology. 2015, 193: 498-506.
[7] Xing-Yu Zhao, Xu-Dong Wang, Xi Liu, Wei-Jie Zhu, Yi-Yuan Mei, Wen-Wen Li, Jun Wang*. Structured lipids enriched with unsaturated fatty acids produced by enzymatic acidolysis of silkworm pupae oil using oleic acid. European Journal of Lipid Science and Technology. 2015, 117(6): 879-889.
[8] Jun Wang, An Gong, Cai-Feng Yang, Qi Bao, Xin-Yi Shi, Bei-Bei Han, Xiang-Yang Wu, Fu-An Wu. An effective biphase system accelerates hesperidinase-catalyzed conversion of rutin to isoquercitrin. Scientific Reports. 2015, 5: 8682.
[9] Jun Wang, Xu-Dong Wang, Xing-Yu Zhao, Xi Liu, Tao Dong, Fu-An Wu. From microalgae oil to produce novel structured triacylglycerols enriched with unsaturated fatty acids. Bioresource Technology. 2015, 184: 405-414.
[10] Jun Wang, Sha-Sha Wang, Zhong-Jian Li, Shuang-Shuang Gu, Xiang-Yang Wu, Fu-An Wu. Ultrasound irradiation accelerates the lipase-catalyzed synthesis of methyl caffeate in an ionic liquid. Journal of Molecular Catalysis B: Enzymatic. 2015, 111(1): 21-28.
[11] Shuang-Shuang Gu, Jun Wang*, Xian-Bin Wei, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Enhancement of lipase-catalyzed synthesis of caffeic acid phenethyl ester in ionic liquid with DMSO co-solvent. Chinese Journal of Chemical Engineering. 2014, 22(11-12): 1314-1321.
[12] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. A novel continuous flow biosynthesis of caffeic acid phenethyl ester from alkyl caffeate and phenethanol in a packed bed microreactor. Bioresource Technology. 2014, 158: 39-47.
[13] Jun Wang, Shuang-Shuang Gu, Na Pang, Fang-Qin Wang, Fei Pang, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Alkyl caffeates improve the antioxidant activity, antitumor property and oxidation stability of edible oil. PLoS ONE. 2014, 9(4): e95909.
[14] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Liu-Qing Yang, Xiang-Yang Wu. Rapid synthesis of propyl caffeate in ionic liquid using a packed bed enzyme microreactor under continuous-flow conditions. Bioresource Technology. 2013, 149: 367–374.
[15] Jun Wang, Guo-Xia Sun, Liang Yu, Fu-An Wu, Xi-Jie Guo. Enhancement of the selective enzymatic biotransformation of rutin to isoquercitrin using an ionic liquid as a co-solvent. Bioresource Technology. 2013, 128: 156–163.
[16] Na Pang†, Shuang-Shuang Gu†, Jun Wang*, Hong-Sheng Cui, Fang-Qin Wang, Xi Liu, Xing-Yu Zhao, Fu-An Wu. A novel chemoenzymatic synthesis of propyl caffeate using lipase-catalyzed transesterification in ionic liquid. Bioresource Technology. 2013, 139: 337–342.
[17] Jun Wang, Ding-Qiang Lu, Qiu-Jun Sun, Hui Zhao, Xiu-Quan Ling, Ping-Kai Ouyang. Reactive extraction and recovery of mono-caffeoylquinic acids from tobacco wastes by trialkylphosphine oxide. Chemical Engineering Science. 2012, 78(8): 53-62.
[18] Jun Wang, Yan-Long Ma, Xiang-Yang Wu, Liang Yu, Rui Xia, Guo-Xia Sun, Fu-An Wu. Selective hydrolysis by commercially available hesperidinase for isoquercitrin production. Journal of Molecular Catalysis B: Enzymatic. 2012, 81(9): 37-42.
[19] Jun Wang, Ding-Qiang Lu, Yao Liang, Hui Zhao, Min Luo, Xiu-Quan Ling, Ping-Kai Ouyang. Isolation of mono-caffeoylquinic acids from tobacco waste using continuous resin-based pre-separation and preparative HPLC. Journal of Separation Science. 2012, 35(10-11): 1379–1387.
[20] 李晶, 王俊*, 张磊霞, 顾双双, 吴福安, 郭跃伟. 离子液体中脂肪酶催化酯类合成的新进展. 有机化学. 2012, 32(7): 1186–1194.
* Corresponding author, †Joint first authors.
[1] Cai-Feng Yang, Yu Zhou, Yu Zheng, Chang-Long Li, Sheng Sheng, Jun Wang*, Fu-An Wu*. Enzymatic modification of chitosan by cinnamic acids: Antibacterial activity against Ralstonia solanacearum. International Journal of Biological Macromolecules. 2016, 87: 577-585.
[2] An Gong, Dan Zhu, Yi-Yuan Mei, Xiao-Hui Xu, Fu-An Wu, Jun Wang*. Enhanced biocatalysis mechanism under microwave irradiation in isoquercitrin production revealed by circular dichroism and surface plasmon resonance spectroscopy. Bioresource Technology. 2016, 205: 48-57.
[3] Sha-Sha Wang, Zhong-Jian Li, Sheng Sheng, Fu-An Wu, Jun Wang*. Microfluidic biocatalysis enhances the esterification of caffeic acid and methanol under continuous-flow conditions. Journal of Chemical Technology and Biotechnology. 2016, 91(2): 555-562.
[4] Xi Liu†, Xu-Dong Wang†, Na Pang, Wei-Jie Zhu, Xing-Yu Zhao, Fang-Qin Wang, Fu-An Wu, Jun Wang*. APA-style human milk fat analogue from silkworm pupae oil: Enzymatic production and improving storage stability using alkyl caffeates. Scientific Reports. 2015, 5: 17909.
[5] Min Wang, Wei-Wei Wu, Sha-Sha Wang, Xin-Yi Shi, Fu-An Wu, Jun Wang*. Preparation and characterization of a solid acid catalyst from macro fungi residue for methyl palmitate production. BioResources. 2015, 10(3): 5691-5708.
[6] An Gong†, Shuang-Shuang Gu†, Jun Wang*, Sheng Sheng, Fu-An Wu. A peculiar segmented flow microfluidics for isoquercitrin biosynthesis based on coupling of reaction and separation. Bioresource Technology. 2015, 193: 498-506.
[7] Xing-Yu Zhao, Xu-Dong Wang, Xi Liu, Wei-Jie Zhu, Yi-Yuan Mei, Wen-Wen Li, Jun Wang*. Structured lipids enriched with unsaturated fatty acids produced by enzymatic acidolysis of silkworm pupae oil using oleic acid. European Journal of Lipid Science and Technology. 2015, 117(6): 879-889.
[8] Jun Wang, An Gong, Cai-Feng Yang, Qi Bao, Xin-Yi Shi, Bei-Bei Han, Xiang-Yang Wu, Fu-An Wu. An effective biphase system accelerates hesperidinase-catalyzed conversion of rutin to isoquercitrin. Scientific Reports. 2015, 5: 8682.
[9] Jun Wang, Xu-Dong Wang, Xing-Yu Zhao, Xi Liu, Tao Dong, Fu-An Wu. From microalgae oil to produce novel structured triacylglycerols enriched with unsaturated fatty acids. Bioresource Technology. 2015, 184: 405-414.
[10] Jun Wang, Sha-Sha Wang, Zhong-Jian Li, Shuang-Shuang Gu, Xiang-Yang Wu, Fu-An Wu. Ultrasound irradiation accelerates the lipase-catalyzed synthesis of methyl caffeate in an ionic liquid. Journal of Molecular Catalysis B: Enzymatic. 2015, 111(1): 21-28.
[11] Shuang-Shuang Gu, Jun Wang*, Xian-Bin Wei, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Enhancement of lipase-catalyzed synthesis of caffeic acid phenethyl ester in ionic liquid with DMSO co-solvent. Chinese Journal of Chemical Engineering. 2014, 22(11-12): 1314-1321.
[12] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. A novel continuous flow biosynthesis of caffeic acid phenethyl ester from alkyl caffeate and phenethanol in a packed bed microreactor. Bioresource Technology. 2014, 158: 39-47.
[13] Jun Wang, Shuang-Shuang Gu, Na Pang, Fang-Qin Wang, Fei Pang, Hong-Sheng Cui, Xiang-Yang Wu, Fu-An Wu. Alkyl caffeates improve the antioxidant activity, antitumor property and oxidation stability of edible oil. PLoS ONE. 2014, 9(4): e95909.
[14] Jun Wang, Shuang-Shuang Gu, Hong-Sheng Cui, Liu-Qing Yang, Xiang-Yang Wu. Rapid synthesis of propyl caffeate in ionic liquid using a packed bed enzyme microreactor under continuous-flow conditions. Bioresource Technology. 2013, 149: 367–374.
[15] Jun Wang, Guo-Xia Sun, Liang Yu, Fu-An Wu, Xi-Jie Guo. Enhancement of the selective enzymatic biotransformation of rutin to isoquercitrin using an ionic liquid as a co-solvent. Bioresource Technology. 2013, 128: 156–163.
[16] Na Pang†, Shuang-Shuang Gu†, Jun Wang*, Hong-Sheng Cui, Fang-Qin Wang, Xi Liu, Xing-Yu Zhao, Fu-An Wu. A novel chemoenzymatic synthesis of propyl caffeate using lipase-catalyzed transesterification in ionic liquid. Bioresource Technology. 2013, 139: 337–342.
[17] Jun Wang, Ding-Qiang Lu, Qiu-Jun Sun, Hui Zhao, Xiu-Quan Ling, Ping-Kai Ouyang. Reactive extraction and recovery of mono-caffeoylquinic acids from tobacco wastes by trialkylphosphine oxide. Chemical Engineering Science. 2012, 78(8): 53-62.
[18] Jun Wang, Yan-Long Ma, Xiang-Yang Wu, Liang Yu, Rui Xia, Guo-Xia Sun, Fu-An Wu. Selective hydrolysis by commercially available hesperidinase for isoquercitrin production. Journal of Molecular Catalysis B: Enzymatic. 2012, 81(9): 37-42.
[19] Jun Wang, Ding-Qiang Lu, Yao Liang, Hui Zhao, Min Luo, Xiu-Quan Ling, Ping-Kai Ouyang. Isolation of mono-caffeoylquinic acids from tobacco waste using continuous resin-based pre-separation and preparative HPLC. Journal of Separation Science. 2012, 35(10-11): 1379–1387.
[20] 李晶, 王俊*, 张磊霞, 顾双双, 吴福安, 郭跃伟. 离子液体中脂肪酶催化酯类合成的新进展. 有机化学. 2012, 32(7): 1186–1194.
* Corresponding author, †Joint first authors.
(1)生物分离工程、生物资源开发与利用、生物分离工程实验、天然药物化学等(本科生)
(2)生物催化与转化、生物基产品工程、蚕桑资源生物转化、生物转化与合成生物学、农业资源利用新技术等(研究生)
(3)Biotransformation of Sericulture Resource(留学生)