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蒋伟


【发布时间:2026-07-23 20:04:22  点击量:



蒋伟,男,四川广安人,博士,浙江农林大学讲师,现代农学院(植物保护学院)大豆功能基因组学团队成员。2024年博士毕业于长江大学,在CSC资助下于2023年到澳大利亚西悉尼大学访学,2024.06~2026.06于南京农业大学/湘湖实验室(农业浙江省实验室)从事博士后。研究方向为植物耐逆进化与分子机制解析。主持承担中国博士后科学基金1项,参与国家自然科学基金面上项目和国家重点研发计划各1项;以第一作者或通讯作者(含共同)在Plant PhysiologyJournal of Experimental BotanyThe Plant JournalJournal of Integrative AgricultureJournal of Hazardous Materials等期刊发表SCI论文15篇,h指数16;担任PPJXBJHMICPHPJJAFCiMeta等多个期刊审稿人,二区期刊Food Science & NutritionFood and Energy Security等客座编辑,获iMeta期刊2025年优秀青年编委;微信公众号新青年植物学家编审组成员等。

工作经历:

2026.07~至今,浙江农林大学,讲师

2024.06~2026.06,南京农业大学/湘湖实验室(农业浙江省实验室),博士后

教育经历:

2022.12~2023.12Western Sydney UniversitySchool of ScienceVisiting Fellow

2020.09~2024.06,长江大学,作物遗传育种,博士(硕转博)

2014.09~2018.06,长江大学,农学,学士

承担及参与项目:

   1.中国博士后科学基金,第76批面上资助, 2024M762711,大麦Hv14-3-3A蛋白调控气孔关闭响应干旱胁迫的分子机制解析,2024-112026-068万元,结题,主持

   2.国家自然科学基金委员会,面上项目,32170276,类钙调蛋白OsCMLa调控水稻籽粒砷积累的机制解析,2022-01-012025-12-3158万元,结题,参与

代表性学术成果(部分,共一:#,共通讯:*):

      1. Jiang, W.#, Deng, F.#, Babla, M.#, Chen, C., Yang, D., Tong, T., Qin Y., Chen G., Marchant D. B., Soltis P. S., Soltis D. E., Zeng F.*, Chen, Z. H.* (2024). Efficient gene editing of a model fern species through gametophyte-based transformation. Plant Physiology, 196, 2346-2361. (植物科学一区, IF=6.6)

      2. Jiang, W.#,*, Wang, Z.#, Xiao, H., Abou-Elwafa, S. F., Alshehri, M. A., Wu, Y., Yu H.*, Tan, W.* (2024). Response of soil heavy metal forms and bioavailability to the application of microplastics across five years in different soil types. Journal of Hazardous Materials, 480, 136068. (环境科学一区, IF=12.2)

      3. Jiang, W., He, J., Babla, M., Wu, T., Tong, T., Riaz, A., Zeng, F., Qin, Y., Chen, G., Deng, F.*, Chen, Z.H.* (2024) Molecular evolution and interaction of 14-3-3 proteins with H+-ATPases in plant abiotic stresses. Journal of Experimental Botany, 75: 689-707 (植物科学二区, IF=5.8)

      4. Zheng, P.#, Jiang, W.#, Chen, Q.#, Feng, S., Huang, M., Yuan, L., Chen, L., Tao, X., Chen, Z.H., Yu, J.*, Xu, S.* (2026). Generating popcorn-like fragrant tomato using CRISPR/Cas9-mediated gene editing. Journal of Integrative Agriculture. 25(5), 2174-2177 (农林科学一区, IF=5.7)

      5. Yang, D.#, Chen, G.#, Jiang, W.#,*, Marchant, D. B., Cai, S., Zhu, X., Soltis, P.S., Soltis, D.E., Chen, Z. H.*(2025). Harnessing fern stress adaptations: From evolution and ecophysiology to molecular biology. The Plant Journal, 124(3), e70572. (Co-corresponding author, 植物科学一区, IF=5.7)

      6. Liu, D.#, Wang, Z.#, Lou, H., Li, P., Cai, K., Jiang, W.*, Chen, Z.* (2026) Physiological and molecular mechanisms underlying the differential responses of wheat seedlings to different types of salt stress. Food Science & Nutrition, 14:e71454. (Co-corresponding author, 农林科学二区, IF=5.0)

      7. Zheng, Q.#, Tang, H.#, Qin, Y.#, Liu, D., Chen, G., Tong, T., Fu, Y., Riaz, A., Deng, F., Chen, Z.H., Zeng, F.*, Jiang, W.* (2025) Genome‐wide identification, molecular evolution, and expression divergence of CLC, ALMT, VDAC, and MSL gene family in barley. Food Science & Nutrition, 13, p.e70110.(Co-corresponding author, 农林科学二区, IF=3.8)

      8. Jiang, W., Tong, T., Chen, X., Deng, F., Zeng, F., Pan, R., Zhang, W., Chen, G.*, Chen, Z.H.* (2022) Molecular response and evolution of plant anion transport systems to abiotic stress. Plant Molecular Biology 110: 397-412. (植物科学二区, IF=4.3)

      9. Jiang, W., Tong, T., Li, W., Huang, Z., Chen, G., Zeng, F., Riaz, A., Amoanimaa-Dede, H., Pan, R., Zhang, W., Deng, F.*, Chen, Z.H.* (2022) Molecular evolution of plant 14-3-3 proteins and function of Hv14-3-3A in stomatal regulation and drought tolerance. Plant and Cell Physiology 63: 1857-1872. (植物科学二区, IF=4.9)

参与发表学术论文(部分):

     1. Tao, X. Y., Tan, C., Liu, Y., Wang, Y., Raza, A., He, J., Wang, L., Xia, K., Yan, Y., Liao, S. Jiang, W. ... & Chen, Z. H. (2026). The potential of wheat spatial omics. Nature Genetics, 1-12. (植物科学一区, IF=29)

      2. Wang, C., Zhu, J., Han, C., Song, Q., Li, Z., Jiang, W., ... & Chen, Z. H. (2026). Multi-omics and genetic analysis uncover salicylic acid-mediated core signaling networks for seed longevity in rice. Plant Physiology. https://doi.org/10.1093/plphys/kiag184. (植物科学一区, IF=8.2)

      3. Chen, X., Jiang, W., Chang, D., Zheng, Q., Zhu, C., Hao, L., ... & Deng, F. (2025). Conservation and divergence of OsGSTU9 and OsGSTU19 in cadmium detoxification and accumulation in rice. Journal of Hazardous Materials, 495, 139162. (环境科学一区, IF=11.3)

      4. Qiao, Y., Lin, Z., Li, L., Jiang, W., Ge, J., Chen, J., ... & Tian, S. (2024). Serendipita indica drives sulfur-related microbiota in enhancing growth of hyperaccumulator Sedum Alfredii and facilitating soil cadmium remediation. Environmental Science & Technology, 58, 14726-14739. (环境科学一区, IF=10.9)

      5. Deng, F., Zeng, F., Shen, Q., Abbas, A., Cheng, J., Jiang, W., Chen, G., Shah, A.N., Holford, P., Tanveer, M., Zhang, D., & Chen, Z.H. (2022) Molecular evolution and functional modification of plant miRNAs with CRISPR. Trends in Plant Science 27: 890-907. (植物科学一区, IF=20.5)

联系方式:

邮箱:weijiang@zafu.edu.cn,学术主页:https://www.researchgate.net/profile/Jiang-Wei-32/research

 



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