李敏

发布者:生命科学学院发布时间:2026-07-08浏览次数:





一、个人基本情况

李敏,女,1987年生,美国南卡罗来纳大学生物科学专业博士,副教授,现为园艺学学硕和农业专硕硕士研究生导师

二、主要研究方向:

主要围绕柑橘黄龙病防控,开展“机理-技术-应用”全链条研究:解析柑橘与黄龙病菌互作的分子机制,融合AI辅助设计进行基因精准编辑,从而创制/抗黄龙病新种质并开发智慧绿色防控技术。

联系方式:minli727@gnnu.edu.cn,18716652986,中美柑橘黄龙病联合实验室9-323

三、主要学术成果

科研项目:

1. 国家自然科学基金青年基金,“柑橘黄龙病菌胁迫下甜橙韧皮部胼胝质合成机制的研究”,322022722023.01-2025.12,结题

2. 国家自然科学基金地区科学基金项目,“柑橘黄龙病菌胁迫下甜橙E3泛素连接酶CsAIRE介导肌动蛋白CsACT7降解的免疫调控机制研究”,32560639,2026.01-2029.12。

近五年部分代表性成果总结如下:

专利申请

1. 段硕,张斯羽,罗瑞芳,焦子怡,李敏一种快速筛选柑橘黄龙病抗菌肽和小分子化合物的方法及其应用申请号2025112787995

2. 段硕,罗瑞芳,张斯羽,焦子怡,李敏一种快速筛选柑橘黄龙病生防菌的方法及其应用申请2025112798699

3. 李敏,廖发金,罗瑞芳,焦子怡,兰宇婷,段硕月桂酸在防治柑橘黄龙病中的应用和防治方法申请号2026107820127

4. 李敏,范梓瑞,罗瑞芳,焦子怡,兰宇婷,万雨芳,敖志华一种极性有机化合物在抗柑橘黄龙病中的应用申请号2026109614938

5. 李敏,汪曹兵,罗瑞芳,焦子怡,兰宇婷,李阳,黄文轩芳香族化合物在防治柑橘黄龙病中的应用申请号2026109614552

论文发表

1) Zhang S, Luo R, Wu Y, Zhang T, Yusuf A, Wang N, Li M, Duan S. (2025). Establishment and application of high-pressure propagation breeding (HPPB)-mediated genetic transformation system in citrus rootstocks. Plant Biotechnology Journal 23(7):2790-2792. doi: 10.1111/pbi.70072.

2) Yusuf A, Li M, Zhang S, Ajibade FO, Luo R, Wu Y, Zhang T, Ugya AY, Zhang Y, Duan S. (2025). Harnessing plant–microbe interactions: Strategies for enhancing resilience and nutrient acquisition for sustainable agriculture. Frontiers in Plant Science 16:1503730. doi: 10.3389/fpls.2025.1503730.

3) Li M#, Guo B#, Liu F, Fu ZQ. (2023) Cross-kingdom vitamin B5 biosynthesis and nematode susceptibility. Trends in Parasitology, 39(1) 7-9.

4) Li M #, Qin H#, Long Y, Cheng M, Li L, Huang A, Wang N, Duan S. (2022). Field-Deployable Candidatus Liberibacter asiaticus Detection Using Recombinase Polymerase Amplification Combined with CRISPR-Cas12a. Journal of Visualized Experiments 190. https://doi.org/10.3791/64070

5) Meng S, Huang S, Liu J, Gai Y, Li M, Duan S, Zhang S, Sun X, Yang Q, Wang Y, Xu K, Ma H. (2022). Histone Methylation Is Required for Virulence, Conidiation, and Multi-Stress Resistance of Alternaria alternata. Frontiers in Microbiology 13:924476. doi: 10.3389/fmicb.2022.924476.

6) Ma H, Meng X, Xu K, Li M, Gmitter F, Liu N, Gai Y, Huang S, Wang M, Wang N, Xu H, Liu J, Sun X, Duan S. (2022). Highly Efficient Agrobacterium rhizogenes-mediated Genetic Transformation and Applications in Citrus. Frontiers in Plant Science. DOI: 10.3389/fpls.2022.1039094

7) Long Y., Luo R, Xu Z, Cheng S, Li L, Ma H, Bao M, Li M, Ouyang Z, Wang N, Duan, S. (2022). A Fluorescent Reporter-Based Evaluation Assay for Antibacterial Components Against Xanthomonas citri subsp. citri. Frontiers in Microbiology, 13, 864963.

8) Chen H., Li M, Qi G, Zhao M, Liu L, Zhang J, Chen G, Wang D, Liu F, Fu ZQ. (2021) Two interacting transcriptional coactivators cooperatively control plant immune responses. Science Advances 7(45): eabl7173.

9) Chen J#, Li M#, Liu L, Chen, G, Fu ZQ. (2021). ZAR1 resistosome and helper NLRs: Bringing in calcium and inducing cell death. Molecular Plant 14(8):1234-1236. (Co-first author)

10) Palmer IA, Chen H, Chen J, Chang M, Li M, Liu F, Fu ZQ. (2019). Novel salicylic acid analogs induce a potent defense response in Arabidopsis. International Journal of Molecular Sciences 20(13): 3356.

11) Chen J, Mohan R, Zhang Y, Li M, Chen H, Palmer IA, Chang M, Qi G, Spoel SH, Mengiste T, Wang D, Liu F, Fu ZQ. (2019). NPR1 promotes its own and target gene expression in plant defense by recruiting CDK8. Plant Physiology 181(1): 289-304.

12) Chang M, Zhao J, Chen H, Li G, Chen J, Li M, Palmer I, Song J, Alfano JR, Liu F, Fu, ZQ.  (2019). PBS3 protects EDS1 from proteasome-mediated degradation in plant immunity. Molecular Plant 12(5):678-688.

13) Li M, Chen H, Chen J, Chang M, Palmer IA, Gassmann W, Liu F, Fu, ZQ. (2018). TCP transcription factors interact with NPR1 and contribute redundantly to systemic acquired resistance. Frontiers in Plant Science 9:1153.

14) Chen H, Chen J, Li M, Chang M, Xu K, Shang Z, Zhao Y, Palmer I, Zhang Y, McGill J, Alfano JR, Nishimura MT, Liu F, Fu, ZQ. (2017). A bacterial type III effector targets the master regulator of salicylic acid signaling, NPR1, to subvert plant immunity. Cell Host & Microbe 22(6), 777-788.