赵天福
发布时间: 2026-03-31 17:33:31 已阅读:
赵天福
男,博士,副教授,硕士生导师。现任问鼎娱乐-问鼎官网 副院长,重庆市蚕丝学会副理事长、茧丝绸专业委员会主任,中国丝绸协会理事,中国纺织工程学会会员,日本信州大学特任教授。重庆市引进海外高层次人才,重庆市科技局科技特派员团队首席专家。1991年在西南农业大学参加工作,1996年至1997年、2002年至2014年在日本信州大学留学和开展合作研究。2008年获日本衣料管理协会认定纤维制品品质管理士(TES,Textiles Evaluation Specialist)。主要从事家蚕分子育种与良种繁育,蚕丝、蜘蛛丝等生物质纤维材料创新与应用,家蚕基因工程等研究。长期致力于运用家蚕基因工程方法改进蚕丝性能,拓展蚕丝蛋白质材料的产业用途。主持国际项目、省部级纵向项目、横向科技合作项目等20余项,承担虚拟仿真实验建设项目、数字教材建设项目等教育教学改革和建设项目多项。成功制作200余个转蜘蛛丝蛋白基因家蚕品系,并开展实用化杂交育种。对原产中国、日本和巴布亚新几内亚等地的10余种蜘蛛建立了丝纤维信息库、丝蛋白基因文库并进行系统分析。主要研究兴趣:以数字化和智慧化为核心的现代养蚕与家蚕良种繁育技术;高强度、高韧性、抗紫外线、耐极端高低温环境的蜘蛛丝纤维的人工利用与开发。
一、教育及工作经历
教育经历
1987.09-1991.06 西南农业大学 蚕学专业 本科
1995.09-2000.06 西南农业大学 特种经济动物饲养专业 硕士
1996.10-1997.09 日本信州大学 应用生物科学科 特别研究学生
2002.10-2006.03 日本信州大学 工学系研究科生物机能工程专业 博士
工作经历
1991-1996 西南农业大学 助教
1991.08-1992.08 四川省遂宁市丝绸公司 挂职
1996-2009 西南农业大学、西南大学 讲师
2009-至今 西南大学 副教授
二、代表性科研成果
1. 代表性科研项目
(1)用于机器学习的家蚕关键内外性状遴选,2025-2026,主持.
(2)蚕种繁育过程智慧化建设研究,2024-2025,主持.
(3)转蜘蛛丝基因特殊用途家蚕新品种的培育,2023-2024,主持.
(4)家蚕分子育种法创制种质资源的快速纯系化技术探究,2022-2023,主持.
(5)家蚕良种繁育虚拟仿真实验建设,2024-2025,主持.
(6)《蚕种学》数字教材建设,2025-2027,主持.
2. 代表性科研论文
(1)Haibo He, Yichen Wang, Hua Huang, Yuhang Lin, Shiping Zhu, Liang Gao, Lunfu Shen, Benhua Xiong, Zhimei Lv, Fangyin Dai, Yongkang Luo, Tianfu Zhao*. PupaNet: A versatile and efficient silkworm pupae (Bombyx mori) identification tool for sericulture breeding based on near-infrared spectroscopy and deep transfer learning. Computers & Electronics in Agriculture, 227 (2024) 109555.
(2)Wang Yichen, Lin Yuhang , Luo Yongkang, Zeng Di, He Haibo, Zhao Tianfu*. High Absorption and Elasticity of a Novel Transgenic Silk with Egg Case Silk Protein from Nephila clavate. Int. J. Mol. Sci.2024, 25, 12793.
(3)Haibo He, Shiping Zhu, Lunfu Shen, Xuening Chang, Yichen Wang, Di Zeng, Benhua Xiong, Fangyin Dai, and Tianfu Zhao*. Integrated Analysis of Machine Learning and Deep Learning in Silkworm Pupae (Bombyx mori) Species and Sex Identification. Animals 2023,13, 3612.
(4)Jia, X., Pang, X., Yuan, Y., Gao, Q., Lu, M., Zhang, G., Dai, F. and Zhao, T*., 2021. Unpredictable recombination of PB transposon in Silkworm: a potential risk. Molecular Genetics and Genomics 296, 271-277.
(5)Yonghua Lu, Tianfu Zhao, Ming Lu, Yaopeng Zhang, Xiang Yao, Guoyi Wu, Fangyin Dai, Fengxiu Zhang and Guangxian Zhang*, 2021. The Analyses of High Infectivity Mechanism of SARS-CoV-2 and Its Variants. COVID 2021, 1, 666–673.
(6)Deng, T., Cheng, L., Peng, Y., Tong, X., Guo, N., Li, Z., Zhao, T. and Dai, F., 2021. Structure and Properties of Bombyx Mandarina Silk Fiber and Hybrid Silk Fiber. Journal of Natural Fibers 18, 330-342.
(7)Li, Q., Hu, E., Yu, K., Xie, R., Lu, F., Lu, B., Bao, R., Zhao, T., Dai, F. and Lan, G., 2020a. Self-Propelling Janus Particles for Hemostasis in Perforating and Irregular Wounds with Massive Hemorrhage. Advanced Functional Materials 30.
(8)Li, S., Huang, S., Xu, F., Zhao, T., Zhang, F. and Zhang, G., 2020b. Imparting superhydrophobicity and flame retardancy simultaneously on cotton fabrics. Cellulose 27, 3989-4005.
(9)Hu, R., Zhao, Z., Zhou, J., Fan, T., Liu, Y., Zhao, T. and Lu, M., 2019. Ultrasound assisted surface micro-dissolution to embed nano TiO2 on cotton fabrics in ZnCl2 aqueous solution. Ultrasonics Sonochemistry 56, 160-166.
(10)赵兵,刘家豪,汪涛,李智,代方银,赵天福*.转基因蚕丝丝素膜的制备与性能表征[J].蚕业科学,2018,44(04):560-566.
(11)赵天福,杜文华,辛佳,付巧娟,赵兵,朱勇.基于PCR的转基因家蚕快速识别方法[J].蚕学通讯,2017,37(03):1-3.
(12)Long, Y., Li, J., Zhao, T., Li, G. and Zhu, Y., 2015. A New Arylalkylamine N-Acetyltransferase in Silkworm (Bombyx mori) Affects Integument Pigmentation. Applied Biochemistry and Biotechnology 175, 3447-3457.
(13)Zhang, L., Han, L., Wang, Y., Zhao, T., Bao, X. and Nakagaki, M., 2013. The Variability of Mechanical Properties and Molecular Conformation among Different Spider Dragline Fibers. Fibers and Polymers 14, 1190-1195.
(14)Zhao, T.-F., Han, L., Wang, Y.-J., Zhu, Y., Zhang, G.-J. and Nakagaki, M., 2013b. Effect of different microinjection operation of eggs on egg hatchability and the occurrence of malformation in the silkworm, Bombyx mori. Acta Entomologica Sinica 56, 499-504.(中文)
(15)Han, L., Zhang, L., Zhao, T., Wang, Y. and Nakagaki, M., 2013. Analysis of a new type of major ampullate spider silk gene, MaSp1s. International Journal of Biological Macromolecules 56, 156-161.
(16)隆耀航,李姣蓉,赵天福,武婧洁,付巧娟,李冠楠,朱勇.用于家蚕转基因的二化性品种蚕卵的预处理研究[J].西南大学学报(自然科学版),2013,35(12):9-15.
(17)赵天福,韩冷,王玉军,徐水.样品长度和拉伸速度对生丝拉伸试验结果的影响[J].丝绸,2013,50(06):29-32+36.
(18)赵天福.高等院校蚕丝文化教育的目的、内容和方式探讨[J].蚕学通讯, 2013,33(01):60-62.
(19)Wang, Y., Sanai, K., Wen, H., Zhao, T. and Nakagaki, M., 2010a. Characterization of unique heavy chain fibroin filaments spun underwater by the caddisfly Stenopsyche marmorata (Trichoptera; Stenopsychidae). Molecular Biology Reports 37, 2885-2892.
(20)Wang, Y., Wang, H., Zhao, T. and Nakagaki, M., 2010b. Characterization of a Cysteine-Rich Protein Specifically Expressed in the Silk Gland of Caddisfly Stenopsyche marmorata (Trichoptera; Stenopsychidae). Bioscience Biotechnology and Biochemistry 74, 108-112.
(21)Wen, H., Lan, X., Zhang, Y., Zhao, T., Wang, Y., Kajiura, Z. and Nakagaki, M., 2010. Transgenic silkworms (Bombyx mori) produce recombinant spider dragline silk in cocoons. Molecular Biology Reports 37, 1815-1821.
(22)Zhao, A., Zhao, T., Zhang, Y., Xia, Q., Lu, C., Zhou, Z., Xiang, Z. and Nakagaki, M., 2010. New and highly efficient expression systems for expressing selectively foreign protein in the silk glands of transgenic silkworm. Transgenic Research 19, 29-44.
(23)Zhang, Y., Hu, J., Miao, Y., Zhao, A., Zhao, T., Wu, D., Liang, L., Miikura, A., Shiomi, K., Kajiura, Z. and Nakagaki, M., 2008. Expression of EGFP-spider dragline silk fusion protein in BmN cells and larvae of silkworm showed the solubility is primary limit for dragline proteins yield. Molecular Biology Reports 35, 329-335.
(24)Miao, Y., Zhang, Y., Nakagaki, K., Zhao, T., Zhao, A., Meng, Y., Nakagaki, M., Park, E.Y. and Maenaka, K., 2006. Expression of spider flagelliform silk protein in Bombyx mori cell line by a novel Bac-to-Bac/BmNPV baculovirus expression system. Applied Microbiology and Biotechnology 71, 192-199.
(25)Zhao, A.C., Zhao, T.F., SiMa, Y.H., Zhang, Y.S., Nakagaki, K., Miao, Y.G., Shiomi, K., Kajiura, Z., Nagata, Y. and Nakagaki, M., 2005. Unique molecular architecture of egg case silk protein in a spider, Nephila clavata. Journal of Biochemistry 138, 593-604.
3. 出版著作
《家蚕饲养与良种繁育学》(参编),2015年,高等教育出版社.
4. 发明专利
(1)RECOMBINANT ORGANISM AND PROTEIN PRODUCED BY THE RECOMBINANT ORGANISM. United States Patent. Patent No.: US 8,222,479 B2. (美国专利,第一发明人)
(2)NUCLEIC ACID ENCODING SILK PROTEIN AND A METHOD OF PRODUCING A SILK THREAD USING SAME. United States Patent. Patent No.: US 8,519,101 B2(美国专利,第一发明人)
(3)NUCLEIC ACID ENCODING A SILK PROTEIN AND A METHOD OF PRODUCING A SILK THREAD USING SAME. United States Patent. Patent No.: US 8,394,942 B2(美国专利,第一发明人)
(4)DRAGLINE PROTEIN. United States Patent. Patent No.: US 8,492,523 B2(美国专利,第一发明人)
(5)核酸、核酸によりコードされるタンパク質、核酸が導入された組換え生物、及び組換え生物により作られるタンパク質. PATENT NUMBER: 5771833. (日本专利,第一发明人)
5. 指导学生获奖
(1)基于机器学习与深度学习的蚕蛹品种和性别鉴定的综合分析.学生:何海波、周启波、唐茂杰、谢宛彤、张峻博,指导老师:赵天福、祝诗平,第六届全国大学生蚕桑生物技术创新大赛硕士生级特等奖(2024年8月)
6. 近年获奖情况
(1)传统农科一流专业建设与人才培养改革的蚕学实践. 重庆市教学成果奖三等奖(2022年5月,排名5/9)、西南大学教育教学成果奖一等奖(2021年3月,排名7/10)
三、联系方式