许强 更新日期:2024-09-18
许强,男,1990年出生,博士导师
工作单位 小麦研究所
电子邮箱 xuqiang1264700418@163.com
招生专业 【博士】:090102作物遗传育种,【学硕】:090102作物遗传育种,【专硕】:095131农艺与种业
◆个人简历
(1) 2016.9–2020.7, 西北农林科技大学, 植物病理学, 博士
(2) 2013.9–2016.7, 西北农林科技大学, 植物病理学, 硕士
(3) 2009.9–2013.7, 南阳师范学院, 生物科学, 学士
◆工作经历
2020.7-至今, 四川农业大学, 小麦研究所, 教授
◆研究领域
1. 利用现有小麦品系(种),近缘材料等种质资源,筛选抗赤霉基因,揭示病原真菌对寄主植物的互作分子机理等。

2. 以小麦对条锈菌免疫应答机制开展研究工作,以揭示小麦与条锈菌互作机理等。
◆科研项目
1. 国家自然科学基金青年项目 2022.01-2024.12

2. 四川省科技厅应用基础项目 2021.03-2022.04

3. 四川省博士后特别资助一等项目 2022.09-2023.09

4. 四川农业大学双支计划优青资助项目 2023.01-2025.12

5. 四川农业大学拔尖人才科研启动项目 2020.09-2024.09

6. 四川农业大学国家重点实验室自由探索项目 2022.09-2025.09

7.四川省天府峨眉计划青年科技人才项目 2023.01-2025.12
◆发表论文
1. Zhang, R., Wu, Y., Qu, X. et al. The RING-finger ubiquitin E3 ligase TaPIR1 targets TaHRP1 for degradation to suppress chloroplast function (2024). Nature Communications, 15, 6905. https://doi.org/10.1038/s41467-024-51249-1.(通讯作者)
2. Hu, S., Jin, M., Xu, Y., Wu, Q., Jiang, Q., Ma, J. et al. (2023) Deacetylation of chitin oligomers by Fusarium graminearum polysaccharide deacetylase suppresses plant immunity. Molecular Plant Pathology, 24, 1495–1509. https://doi.org/10.1111/mpp.13387(通讯作者)
3. Li, Y., Zhang, R., Wu, Y., Wu, Q., Jiang, Q., Ma, J. et al. (2023) TaRBP1 stabilizes TaGLTP and negatively regulates stripe rust resistance in wheat. Molecular Plant Pathology, 24, 1205–1219. https://doi.org/10.1111/mpp.13364. (通讯作者)
4. Tang, C., Xu, Q, Zhao, J, Yue, M, Wang, J, Wang, X, Kang, Z and Wang, X (2022) A rust fungus effector directly binds plant pre-mRNA splice site to reprogram alternative splicing and suppress host immunity. Plant Biotechnology Journal. 20(6): 1167-1181. (第二作者)
5. Xu, Q, Hu, S, Jin, M, Xu, Y, Jiang, Q. & Ma, J. et al. (2022). The N-terminus of a Fusarium graminearum-secreted protein enhances broad-spectrum disease resistance in plants. Molecular Plant Pathology. DOI10.1111/mpp.13262. (第一作者)
6. Xu Q, Wang J, Zhao J, et al. A polysaccharide deacetylase from Puccinia striiformis f. sp. tritici is an important pathogenicity gene that suppresses plant immunity (2020). Plant Biotechnology Journal, 18(8): 1830-1842; DOI: 10.1111/pbi.13345. (第一作者)
7. Xu Q, Tang C, Wang L, et al. Haustoria – arsenals during the interaction between wheat and Puccinia striiformis f. sp. tritici (2020). Molecular Plant Pathology, 21(1): 83-94; DOI: 10.1111/mpp.12882. (第一作者)
8. Xu Q, Tang C, Wang X, et al. An effector protein of the wheat stripe rust fungus targets chloroplasts and suppresses chloroplast function (2019). Nature Communications, 10(1); DOI: 10.1038/s41467-019-13487-6. (第一作者)
9. Tang C, Xu Q, Zhao M, et al. Understanding the lifestyles and pathogenicity mechanisms of obligate biotrophic fungi in wheat: The emerging genomics era (2017). Crop Journal , 6(1): 60-67; DOI: 10.1016/j.cj.2017.11.003. (第二作者)
10. Abouattia M A, Wang X, Alattala M N, Xu Q, et al. TaMDAR6 acts as a negative regulator of plant cell death and participates indirectly in stomatal regulation during the wheat stripe rust–fungus interaction (2016). Physiologia Plantarum, 156(3): 262-277.; DOI: 10.1111/ppl.12355. (第五作者)