申晓林头像

申晓林

教授

研究方向:合成生物学与代谢工程

学历:博士研究生毕业

  • 部门: 生命科学与技术学院
  • ORCID:
  • DBLP:

10 访问

  • 电子邮箱: shenxl(at)buct.edu.cn
  • 办公地址:

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。

教育经历

入学时间 毕业时间 学位授予单位 学历

工作经历

起始年月 截止年月 所在单位名称

社会职务

社会活动

研究领域

合成生物学及代谢工程、生物化工


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

研究生课程

校级项目

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

专利

荣誉及奖励

招生信息