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蒲 祥 男 |
职称:副教授 职务:系主任 |
所属系室:应用化学系 |
导师类别:硕士生导师 最高学位:理学博士 |
Tel:13541122813 Email :puxiang@sicau.edu.cn |
< 个人简历 >
毕业学校:中科院/四川大学
招收硕士专业:
学硕:生物资源化学 专硕:生物与医药
招收方向:生物合成化学、绿色催化合成、功能基因组学
已指导硕士员工数:8
主要讲授课程:药物化学,化员工物学,药物分析
学术组织任职:中国化学会会员,中国植物学会会员,Frontiers in Plant Science和Plants客座编辑,Bioorganic Chemistry, Journal of Agricultural and Food Chemistry, Industrial Crops and Products, Current Medicinal Chemistry,Phytochemistry Reviews等期刊审稿人。
2010年7月毕业于西南交通大学,获理学学士学位;2010年9月-2011年7月于中国科学技术大学化学系进行硕士理论课程学习;2015年7月获四川大学植物学和中国科学院大学药物化学理学博士学位。主持国家级、省部级科研与教改项目8项,主编英文学术著作1部,副主编、参编规划教材3部,在Bioorg Chem、Int J Biol Macromol, Ind Crop Prod, Syn Syst Biotechno,J Chromatogr A等学术刊物上发表SCI收录论文33篇,CSCD收录论文4篇,教研论文4篇,授权国家发明专利6项,获软件著作权6项。
< 主要论著 >
1. Camptothecin-producing endophytic fungus Trichoderma atroviride LY357: isolation, identification, and fermentation conditions optimization for camptothecin production. Applied Microbiology and Biotechnology. 2013,97,9365-9375.
2. Isolation and characterization of Paenibacillus polymyxa LY214, a camptothecin-producing endophytic bacterium from Camptotheca acuminata. Journal of Industrial Microbiology & Biotechnology. 2015,42,1197-1202.
3. Enhanced production of camptothecin and biological preparation of N 1-acetylkynuramine in Camptotheca acuminata cell suspension cultures. Applied Microbiology and Biotechnology. 2017, 101,4053-4062.
4. Possible clues for camptothecin biosynthesis from the metabolites in camptothecin-producing plants. Fitoterapia. 2019,134,113-128.
5. Bifunctional cytochrome P450 enzymes involved in camptothecin biosynthesis. ACS Chemical Biology. 2019, 14,1091-1096.
6. The construction of an in-house phytometa database for metabolite identification in metabolomic analysis of Camptotheca acuminate. Plant Metabolic Engineering, Lucca, Italy, 2019.6.16-2019.6.21.
7.Biosynthesis-inspired mining and identification of untapped alkaloids in Camptotheca acuminate for enzyme discovery using ultra-high performance liquid chromatography coupled with quadrupole-time of flight-mass spectrometry. Journal of Chromatography A, 2020,1620,461036.
8. “双一流”背景下高等农业院校有机化学基础课程教学新模式的构建及实践,大学化学,2021,36,2002053.
9. Integrative analysis of elicitor-induced camptothecin biosynthesis in Camptotheca acuminata plantlets through a combined omics approach. Frontiers in Plant Science, 2022,13, 851077.
10.Structure-based identification and pathway elucidation of flavonoids in Camptotheca acuminate. Synthetic and Systems Biotechnology,2022,7,824-836.
11.“新农科”背景下伟德国际victor1946一流化学专业建设,大学化学,2022,37,2204075.
12. 有机化学实验,农业农村部“十三五”规划教材,ISBN:9787109302013,副主编.
13. Discovery of unique CYP716C oxidase involved in pentacyclic triterpene biosynthesis from Camptotheca acuminata. Plant Physiology and Biochemistry, 2023,202,107929.
14. Proteomics-guided mining and characterization of epoxidase involved in camptothecin biosynthesis from Camptotheca acuminata. ACS Chemical Biology, 2023,18,1772-1785.
15. 党建引领促进专业发展—伟德国际victor1946应用化学系教师支部书记工作室建设实践,中国化学会第三届农业化学学术讨论会,北京,中国, 2023.8.28-2023.8.30.
16. Elucidation the untapped biosynthetic pathway for camptothecin and characterization the CYP450 enzyme element. International Conference on Metabolic and Protein Engineering for Biosynthesis, Dalian, China, 2023.11.2-2023.11.5.
17. Discovery of a novel flavonol O-methyltransferase possessing sequential 4′- and 7-O-methyltransferase activity from Camptotheca acuminata Decne. International Journal of Biological Macromolecules,2024,266,131381.
18. 喜树基因与蛋白资源库中功能酶元件发掘与表征, 第二届“千种本草基因组计划”研讨会,成都,中国,2024.4.12-2024.4.15.
19. Plant secondary metabolite biosynthesis, Lausanne: Frontiers Media SA. ISBN: 9782832553909, 主编.
20. Hydroxylase-oriented mining and functional characterization of camptothecin 10-hydroxylase from Camptotheca acuminata Decne. Industrial Crops & Products, 2024,222,119469.
21. 喜树碱下游生物合成途径解析与CYP450功能酶元件发掘,第十九届全国药用植物及植物药学术研讨会,长沙,中国,2024.8.13-2024.8.16.
22. Multiomics-guided mining and characterization of epoxide hydrolase involved in camptothecin biosynthesis from Camptotheca acuminata. Bioorganic Chemistry, 2024,153,107980.
23. Elucidation the Untapped Biosynthetic Pathway for Camptothecin and Characterization the Corresponding CYP450 Enzyme Elements from Camptotheca acuminata. International Conference on Plant Metabolism, Sanya, China, 2024.11.21-2024.11.25.
< 科研项目及成果获奖(含专利、新品种) >
1.基于转录组的喜树碱合成关键基因CaSTR的挖掘与功能分析,四川省教育厅重点项目,2017-2019,主持
2.喜树碱生物合成关键酶基因CaSTR的挖掘与功能研究,国家自然科学基金项目,2018-2020,主持
3.“双一流”背景下高等农业院校数理化基础课程教学新模式的构建及实践,四川省教育厅教改项目,2018-2020,主持
4. 高等农业院校数理化基础课程“3+3”教学模式的构建与实践,2020年校级教学成果奖二等奖
5.喜树中具有环氧化和羟化氧化功能的CYP450基因的挖掘与功能研究,中央引导地方科技发展项目,2021-2022,主持
6. 羟基喜树碱生物合成关键基因CaCYP81的挖掘与功能研究,四川省自然科学青年科学基金项目,2022-2023,主持
7.钩藤中钩藤碱螺环合成途径双键还原酶元件的发掘与功能解析, 中央本级重大增减支项目, 2024-2026, 主持
8. 钩藤碱螺环合成限速步骤UrOMT酶元件发掘与关键前体缝籽木嗪甲醚的绿色合成,四川省自然科学基金面上项目,2025-2026,主持