
赵腾飞,中共党员,河南叶县人,博士,博士后,西南大学生命科学学院副教授,硕士生导师。中国作物学会甘薯专委会重庆联络秘书。主讲《遗传学》和《遗传学实验》等本科课程。在Nature Communications、Horticulture Research、ACS Synthetic Biology、Industrial Crops and Products、Plant Physiology and Biochemistry等期刊发表论文20余篇,其中以第一作者或通讯作者发表中科院二区以上SCI论文8篇。申请发明专利5项(授权4项)。主持国家自然科学基金青年基金、重庆市自然科学基金等各类项目10余项;参与国家级科研项目5项。指导学生获中国国际大学生创新大赛(2025)国赛银奖等荣誉。
研究方向:植物遗传育种;植物天然产物生物合成途径解析及调控研究
期刊论文
#第一(共同第一)作者;*通讯(共同通讯)作者
1.Gao, J., Qin, R., Lv, Q., Chen, P., Wu, C., Huang, R., Liu, Y., Jiang, L., Yang, F., Yang, R.,Zhao, T.*, & Fu, Y.*(2026). The WRKY transcription factor IbWRKY24 regulates flavonoid biosynthesis in sweetpotato (Ipomoea batatas [L.] Lam.) blades.Horticulture Research. DOI: 10.1093/hr/uhag283.
2.Ma, P., Liu, C., Mo, A., &Zhao, T.*(2026). Plant Ornithine Decarboxylase: A Key Regulator of Polyamine Biosynthesis and Its Roles in Growth, Stress Response, and Secondary Metabolism.Horticulturae, 12(3), 389. DOI: 10.3390/horticulturae12030389
3.Liu, X., Yang, M., Zhu, J., Zeng, J., Qiu, F., Zeng, L., Yang, C., Zhang, H., Lan, X., Chen, M., Liao, Z., &Zhao, T.*(2024). Functional divergence of two arginine decarboxylase genes in tropane alkaloid biosynthesis and root growth in Atropa belladonna.Plant Physiology and Biochemistry. DOI: 10.1016/j.plaphy.2024.108439
4.Zhao, T. , Yang, M., Htun, Z.L.L., Zhou, J., Zeng, J., Qiu, F., Zhang, H., Lan, X., Chen, M., & Liao, Z.* (2024). Engineering the production of scopolamine and cold tolerance through overexpressing ODC and H6H in Atropa belladonna.Industrial Crops and Products, 208, 117886. DOI: 10.1016/j.indcrop.2023.117886
5.Zhao, T. , Zeng, J., Yang, M., Qiu, F., Tang, Y., Zeng, L., Yang, C., He, P., Lan, X., Chen, M., Liao, Z., & Zhang, F. (2022). Ornithine decarboxylase regulates putrescine-related metabolism and pollen development in Atropa belladonna.Plant Physiology and Biochemistry, 192, 110-119. DOI: 10.1016/j.plaphy.2022.09.030
6.Zhao, T. , Li, S., Wang, J., Zhou, Q., Yang, C., Bai, F., Lan, X., Chen, M., & Liao, Z.* (2020). Engineering Tropane Alkaloid Production Based on Metabolic Characterization of Ornithine Decarboxylase in Atropa belladonna.ACS Synthetic Biology, 9(2), 437-448. DOI: 10.1021/acssynbio.9b00461
7.Zhao, T. , Wang, C., Bai, F., Li, S., Yang, C., Zhang, F., Bai, G., Chen, M., Lan, X., & Liao, Z.* (2019). Metabolic Characterization of Hyoscyamus niger Ornithine Decarboxylase.Frontiers in Plant Science, 10, 229.
8.Liu, W.#,Zhao, T.#, Wang, H., et al. (2015). Reference gene selection in Artemisia annua L., a plant species producing anti-malarial artemisinin.Plant Cell, Tissue and Organ Culture (PCTOC), 121, 141-152.
参与合作的论文
1.Zeng, L.,Zhao, T., Wang, M., Sun, Y., Liu, C., Lan, X., Song, P., & Liao, Z. (2025). Biochemical Characterization of Ornithine Decarboxylases from Solanaceae Plants Producing Tropane Alkaloids.Horticulturae, 11(7), 748. DOI: 10.3390/horticulturae11070748
2.Qiu, F., Liao, S., Zeng, J.,Zhao, T., Zhang, F., Song, S., Tang, K., & Liao, Z. (2025). Medicinal Tropane Alkaloids: Biosynthesis, Evolution, and Engineering.Engineering. DOI: 10.1016/j.eng.2025.07.019
3.Liu, X.,Zhao, T. , Yuan, L., Qiu, F., Tang, Y., Li, D., Zhang, F., Zeng, L., Yang, C., Nagdy, M.M., Htun, Z.L.L., Lan, X., Chen, M., Liao, Z., & Li, Y. (2024). A Fruit-Expressed MYB Transcription Factor Regulates Anthocyanin Biosynthesis in Atropa belladonna.International Journal of Molecular Sciences, 25(9), 4963. DOI: 10.3390/ijms25094963
4.Luo, Q., Chen, P., Zong, J., Gao, J., Qin, R., Wu, C., Lv, Q., Xu, Y.,Zhao, T. , & Fu, Y. (2024). Integrated transcriptomic and CGAs analysis revealed IbGLK1 is a key transcription factor for chlorogenic acid accumulation in sweetpotato (Ipomoea batatas [L.] Lam.) blades.International Journal of Biological Macromolecules, 131045. DOI: 10.1016/j.ijbiomac.2024.131045
5.Zeng, J., Liu, X., Dong, Z., Zhang, F., Qiu, F., Zhong, M.,Zhao, T. , Yang, C., Zeng, L., Lan, X., Zhang, H., Zhou, J., Chen, M., Tang, K., & Liao, Z. (2024). Discovering a mitochondrion-localized BAHD acyltransferase involved in calystegine biosynthesis and engineering the production of 3β-tigloyloxytropane.Nature Communications. DOI: 10.1038/s41467-024-47968-0
6.Wang, J., Chen, P.,Zhao, T., Huang, X., Zong, J., Luo, Q., Peng, C., Wu, X., Qiu, F., Zhao, D., Xiang, L., Zhang, Y., Yang, C., Zhang, F., Liao, Z., Fu, Y., & Zeng, J. (2024). Biosynthesis of Scopoletin in Sweet Potato Confers Resistance against Fusarium oxysporum.Journal of Agricultural and Food Chemistry. DOI: 10.1021/acs.jafc.3c09389
7.Zhang, F., Qiu, F., Zeng, J., Xu, Z., Tang, Y.,Zhao, T. , Gou, Y., Su, F., Wang, S., Sun, X., Xue, Z., Wang, W., Yang, C., Zeng, L., Lan, X., Chen, M., Zhou, J., & Liao, Z. (2023). Revealing evolution of tropane alkaloid biosynthesis by analyzing two genomes in the Solanaceae family.Nature Communications. DOI: 10.1038/s41467-023-37133-4
8.Chen, P., Li, J., Luo, Q., Zong, J., Gao, J., Qin, R., Ran, H.,Zhao, T. , & Fu, Y. (2023). Transcriptome and physiological analysis revealed the difference of resistance to fresh-cut browning among sweetpotato genotypes.Postharvest Biology and Technology. DOI: 10.1016/j.postharvbio.2023.112504
9.Zong, J., Chen, P., Luo, Q., Gao, J., Qin, R., Wu, C., Lv, Q.,Zhao, T. , & Fu, Y. (2023). Transcriptome-Based WGCNA Analysis Reveals the Mechanism of Drought Resistance Differences in Sweetpotato (Ipomoea batatas (L.) Lam.).International Journal of Molecular Sciences, 24(18), 14398. DOI: 10.3390/ijms241814398
10.Chen, P., Ran, H., Li, J., Zong, J., Luo, Q.,Zhao, T. , Liao, Z., Tang, Y., & Fu, Y. (2022). Antioxidant Activity of Phenolic Extraction from Different Sweetpotato (Ipomoea batatas (L.) Lam.) Blades and Comparative Transcriptome Analysis Reveals Differentially Expressed Genes of Phenolic Metabolism in Two Genotypes.Genes, 13(6), 1078. DOI: 10.3390/genes13061078。
11.Bai, F., Li, S., Yang, C.,Zhao, T. , Zhang, T., Lan, X., Chen, M., & Liao, Z. (2019). Overexpression of the AbSAUR1 gene enhanced biomass production and alkaloid yield in Atropa belladonna.Industrial Crops and Products. DOI: 10.1016/j.indcrop.2019.111705
12.Zhao, K., Zeng, J.,Zhao, T. , Zhang, H., Qiu, F., Yang, C., Zeng, L., Liu, X., Chen, M., Lan, X., & Liao, Z. (2017). Enhancing tropane alkaloid production based on the functional identification of tropine-forming reductase in scopolia lurida, a tibetan medicinal plant. Frontiers in Plant Science. DOI: 10.3389/fpls.2017.01745
13.Xiang, L., Zhu, S.,Zhao, T. , Zhang, M., Liu, W., Chen, M., Lan, X., & Liao, Z. (2015). Enhancement of artemisinin content and relative expression of genes of artemisinin biosynthesis in Artemisia annua by exogenous MeJA treatment.Plant Growth Regulation. DOI: 10.1007/s10725-014-0004-z
14.宗继锴,陈培涛,罗青青,赵腾飞,高纪龙,秦瑞华, &傅玉凡. (2023).甘薯抗旱品系(种)的筛选及其生理特征分析.西南大学学报(自然科学版). DOI: 10.13718/j.cnki.xdzk.2023.10.003
15.罗青青,陈培涛,宗继锴,傅玉凡,赵腾飞,徐元江,高纪龙, &秦瑞华. (2023).甘薯叶片绿原酸及其抗氧化活性的基因型差异.西南大学学报(自然科学版). DOI: 10.13718/j.cnki.xdzk.2023.10.007
16.段小炼,崔洪平,胡江,苏令,高纪龙,秦瑞华,赵腾飞, &傅玉凡. (2024).栽插日期对甘薯品种“渝薯15”块根品质及产量的影响.南方农业. DOI: 10.19415/j.cnki.1673-890x.2024.05.018
17.王卫强,杨津,赵腾飞,傅玉凡,李清虎,马强,曾令江,任自明,廖志华, &钟巍然. (2025).橘红肉鲜食型甘薯新品种“庆渝薯6号”的选育及栽培要点.南方农业. DOI: 10.19415/j.cnki.1673-890x.2025.19.014
联系方式
邮箱:tengfeizhao@swu.edu.cn
地址:重庆市北碚区天生路2号西南大学生命科学学院 邮编:400715