个人简介
申晓林,博士,教授,博士生导师。国家级青年人才,中国生物工程协会青年工作委员会委员,中国生物过程标准化工作组委员,南京市领军型科技创新创业人才,入选北京化工大学青年英才百人计划,美国佐治亚大学访问学者。北京市普通高校毕业论文优秀指导教师,北京市青年教师教学基本功大赛二等奖,北京市课程思政名师,北化青年教学名师。主要研究方向为合成生物学及代谢工程,聚焦芳香族化合物高效生物合成,先后负责多项国家自然科学基金项目、国家高技术研究发展“863”计划子课题、国家重点研发计划课题、子课题及企业横向课题。在 Chem. Soc. Rev.、Metab. Eng.、Biotech. Adv. 等期刊发表SCI论文60余篇,参编代谢工程英文专著1部。申请中国发明专利12项,授权4项,美国专利1项。
本科生课程
| 课程名称 |
开课学年 |
课程总学时 |
选课人数 |
课程性质 |
| 生物化学 |
2025 |
72 |
68 |
专业必修 |
| 生物化学 |
2025 |
72 |
73 |
专业必修 |
| 生物化学 |
2024 |
72 |
64 |
专业必修 |
| 生物化学 |
2024 |
72 |
59 |
专业必修 |
| 生物化学 |
2023 |
72 |
74 |
专业必修 |
| 生物化学 |
2023 |
72 |
49 |
专业必修 |
| 生物化学 |
2022 |
72 |
63 |
专业必修 |
| 生物化学 |
2022 |
72 |
32 |
专业必修 |
| 生物化学 |
2022 |
72 |
56 |
专业必修 |
| 生物化学 |
2021 |
72 |
58 |
专业必修 |
| 生物化学 |
2021 |
72 |
52 |
专业必修 |
| 生物化学 |
2021 |
72 |
58 |
专业必修 |
| 生物化学 |
2020 |
72 |
47 |
专业必修 |
纵向项目
- 1. AI-2群体感应系统介导的甲基化天然产物高效合成研究 ,国家自然科学基金项目,项目时间:2025-01-01 至 2028-12-31
- 2. 食品功能组分生物合成关键技术及产业化示范 ,国家科技部,项目时间:2024-12-01 至 2027-11-30
- 3. 高端日用化学品绿色生物制造关键技术及产业化应用 ,省、市、自治区科技项目,项目时间:2022-01-01 至 2024-12-31
- 4. 代谢网络精准设计重构突破莽草酸途径原子经济性的研究 ,国家自然科学基金项目,项目时间:2021-01-01 至 2024-12-31
- 5. 香豆素生物合成关键酶及菌株定向进化及机理解析 ,国家自然科学基金项目,项目时间:2020-01-01 至 2023-12-31
- 6. 水华蓝藻合成微生物控制系统构建与应用 ,国家重点研发计划,项目时间:2019-07-01 至 2024-06-30
- 7. 微生物化学品工厂的设计重构 ,国家重点研发计划,项目时间:2019-07-01 至 2024-06-30
横向项目
- 1. 生物法生产红景天苷技术开发 ,自选课题,项目时间:2025-05-14 至 2045-05-31
- 2. 高结晶度 PET 的高效生物降解与转化 ,企事业单位委托科技项目,项目时间:2023-08-01 至 2024-12-31
- 3. 华熙生物科技股份有限公司—北京化工大学 生物活性物联合研发中心 共建协议 ,自选课题,项目时间:2022-07-01 至 2027-06-30
- 4. 生物法生产香兰素技术开发 ,自选课题,项目时间:2021-07-31 至 2031-06-30
- 5. 生物发酵法生产熊果苷专利申请权及相关新技术转让 ,自选课题,项目时间:2020-10-09 至 2022-12-31
- 6. 生物合成对乙酰氨基酚的工艺研究 ,自选课题,项目时间:2019-04-10 至 2021-04-10
论文信息
[+][-]代表性论文
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2030年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2029年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2028年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2027年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2026年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2025年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2024年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]
2023年
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
[+][-]2023年之前
-
1. DOI
Zhang, Yongli;Zhou, Zhao;Wu, Jun;Shi, Yiyang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Construction and application of an efficient methylation platform in Escherichia coli based on SAM regeneration[期刊论文],CHEMICAL ENGINEERING JOURNAL,2025-05-15
-
2. DOI
Wang, Jingyan;Zhao, Qiangjing;Chen, Xin;Lu, Yichen;Sun, Xinxiao;Yuan, Qipeng;Wang, Jia;Shen, Xiaolin
Engineering a novel pathway for efficient biosynthesis of salicin in Escherichia coli[期刊论文],METABOLIC ENGINEERING,2024-11-01
-
3. DOI
Yu, Zheng;Li, Wenna;Ge, Chang;Sun, Xinxiao;Wang, Jia;Shen, Xiaolin;Yuan, Qipeng
Functional expansion of the natural inorganic phosphorus starvation response system in Escherichia coli[期刊论文],Biotechnology Advances,2023-09-01
-
4. DOI
Zhou, Zhao;Zhang, Xiangyan;Wu, Jun;Li, Xianglai;Li, Wenna;Sun, Xinxiao;Wang, Jia;Yan, Yajun;Shen, Xiaolin;Yuan, Qipeng
Targeting cofactors regeneration in methylation and hydroxylation for high level production of Ferulic acid[期刊论文],Metabolic Engineering,2022-09-01
软件著作
| 作者类型 |
作者姓名 |
著作名称 |
出版日期 |
出版社 |
排名/总人数 |
| 教师 |
申晓林 |
Engineering Microbial Metabolism for Chemical Synthesis: Reviews and Perspectives |
2018-03-01 00:00:00 |
World Scientific Press |
2 |
|