生命科学学院(生态林业学院)

school of Life Sciences(school of Ecological Forestry)

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  • 厚德  博学  笃行  弘毅

    绵阳师范学院·生命科学学院(生态林业学院)

    School of Life Sciences(SCHOOL OF ECOLOGICAL FORESTRY)

    厚德  博学  笃行  弘毅

    绵阳师范学院·生命科学学院(生态林业学院)

    School of Life Sciences(SCHOOL OF ECOLOGICAL FORESTRY)

    厚德  博学  笃行  弘毅

    绵阳师范学院·生命科学学院(生态林业学院)

    School of Life Sciences(SCHOOL OF ECOLOGICAL FORESTRY)

    厚德  博学  笃行  弘毅

    绵阳师范学院·生命科学学院(生态林业学院)

    School of Life Sciences(SCHOOL OF ECOLOGICAL FORESTRY)

    ·师资力量

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    姓名:戚拓

    职称:研究员

    最高学位博士

    电子邮件:qituo777@163.com

    个人简介

      戚拓,19881月生,男,博士,研究员,硕士研究生导师,陕西西安人,四川省峨眉计划青年人才。 2018年毕业于西北农林科技大学植物保护学院植物病理专业,以水稻小麦等重大农作物真菌病害为研究对象,开展植物病原真菌致病机理解析及绿色防治手段开发。主持国家自然科学基金青年科学基金1项,四川省峨眉计划青年人才项目1项,四川省科技厅面上项目1项,重点实验室开放课题1项,以第一作者或通讯作者在Molecular PlantPlant Biotechnology Journal、等植物领域主流刊物上发表论文20余篇,ESI高被引论文1篇,论文总他引162次。

    主要学习和工作经历

    2006.09-2010.06 西北农林科技大学葡萄酒学院,获工学学士学位

    2011.09-2014.06 西北农林科技大学植物保护学院,获农学硕士学位

    2014.09-2018.12 西北农林科技大学植物保护学院,获农学博士学位

    2019.05-2022.12 四川农业大学作物及资源发掘与利用国家重点实验室

    2023.01—至今   绵阳师范学院

    研究领域

    植物真菌病害绿色防控

    学术任职及荣誉(含获奖)

    2022年获“四川省峨眉计划青年人才”称号

    2024年获“绵阳市引才计划青年人才”称号

    2022获陕西省科技进步一等奖(排名3小麦-条锈菌互作分子机制解析及持久抗病材料创制

    2021 年获陕西省高等学校创新成果奖特等奖(排名3

    2019 年获西北农林科技大学优秀博士论文

    任四川省植物保护学会理事、四川省青年科技联合会会士、中国青年科技工作者协会会士、Frontiers in plant science 学术编辑等

    教学工作

    承担《药用植物学》、植物学等课程

    教学科研项目

    · 国家自然科学基金青年项目稻瘟病菌超长链脂肪酸缩合酶MoElo对致病性的分子调控作用32001851,主持

    · 四川省科技厅面上项目稻瘟病菌长链非编码RNAlncRNA5)对致病的调控机制2023NSFSC0149,主持

    · 四川省天府英才工程项目作物重大真菌病害绿色防治机理解析及应用2212199012,主持

    · 旱区作物逆境生物学国家重点实验室开放课题锈菌效应子PstGSRE1调控寄主靶标TaLOL2的机理研究, CSBAA2020010,主持

    · 绵阳市中央引导地方项目微生物组改变影响作物真菌病害机理研究,2023ZYDF007,主持

    · 横向课题:霹雳秋海棠快繁技术开发及应用,(HX2024117),主持

    · 横向课题:有益微生物资源筛选及评价,(HX2023051),主持

    代表论著/专利

    论文:

    · Yang, C., Wang, Z., Wan, J., Qi, T., & Zou, L. (2023). Burkholderia gladioli strain KJ-34 exhibits broad-spectrum antifungal activity. Frontiers in plant science, 14, 1097044. https://doi.org/10.3389/fpls.2023.1097044

    · Zhang, Y., Liang, X., Zhao, M., Qi, T., Guo, H., Zhao, J., Zhao, J., Zhan, G., Kang, Z., & Zheng, L. (2023). A novel ambigrammatic mycovirus, PsV5, works hand in glove with wheat stripe rust fungus to facilitate infection. Plant communications, 4(3), 100505. https://doi.org/10.1016/j.xplc.2022.100505

    · Liang, L., Ze, M., Yang, J., Xu, Q., Du, C., Hu, X., Dong, M., Zou, L., & Qi, T. (2024). Physiological and transcriptomic response reveals new insight into manganese tolerance of Celosia argentea Linn. Journal of hazardous materials, 465, 133079. https://doi.org/10.1016/j.jhazmat.2023.133079

    · Shen, W., Liu, R., Wang, J., Yang, M., Qi, T., Shu, G., He, M., & Chen, X. (2024). Characterization of a broad-spectrum antifungal strain, Streptomyces graminearus STR-1, against Magnaporthe oryzae. Frontiers in microbiology, 15, 1298781. https://doi.org/10.3389/fmicb.2024.1298781

    · Ze, M., Ma, F., Zhang, J., Duan, J., Feng, D., Shen, Y., Chen, G., Hu, X., Dong, M., Qi, T., & Zou, L. (2024). Beneficial effects of Bacillus mojavensis strain MTC-8 on plant growth, immunity and disease resistance against Magnaporthe oryzae. Frontiers in microbiology, 15, 1422476. https://doi.org/10.3389/fmicb.2024.1422476

    · Huang, H., Yang, L., Luo, C., Qi, T., & Duan, J. (2025). Transcriptome Analysis of Wild Bletilla striata Tubers Across Multiple Years Revealed the Molecular Mechanisms Regulating Polysaccharide Metabolism and Tuber Enlargement. Plants (Basel, Switzerland), 14(5), 689. https://doi.org/10.3390/plants14050689

    · Chao, K., Qi, T., Wan, Q., & Li, T. (2023). Insights into the Flavor Differentiation between Two Wild Edible Boletus Species through Metabolomic and Transcriptomic Analyses. Foods (Basel, Switzerland), 12(14), 2728. https://doi.org/10.3390/foods12142728

    · Hu, X.; Liang, L.; Chen, X.; Deng, L.; Zou, L.; Dong, M.; Wu, Q.; Qi, T. Transcriptomic and Phytohormone Metabolomics Provide Insight into the Changes in Citrus limon Infected by Citrus yellow vein clearing virus. Horticulturae 2024, 10, 231. https://doi.org/10.3390/horticulturae10030231

    · Qi, T., Guo, J., Peng, H., Liu, P., Kang, Z., & Guo, J. (2019). Host-Induced Gene Silencing: A Powerful Strategy to Control Diseases of Wheat and Barley. International journal of molecular sciences, 20(1), 206. https://doi.org/10.3390/ijms20010206

    · He, M., Su, J., Xu, Y., Chen, J., Chern, M., Lei, M., Qi, T., Wang, Z., Ryder, L. S., Tang, B., Osés-Ruiz, M., Zhu, K., Cao, Y., Yan, X., Eisermann, I., Luo, Y., Li, W., Wang, J., Yin, J., Lam, S. M., … Chen, X. (2020). Discovery of broad-spectrum fungicides that block septin-dependent infection processes of pathogenic fungi. Nature microbiology, 5(12), 1565–1575. https://doi.org/10.1038/s41564-020-00790-y

    · Qi, T., Wang, J., Sun, Q., Day, B., Guo, J., & Ma, Q. (2017). TaARPC3, Contributes to Wheat Resistance against the Stripe Rust Fungus. Frontiers in plant science, 8, 1245. https://doi.org/10.3389/fpls.2017.01245

    · Zhu, X., Qi, T., Yang, Q., He, F., Tan, C., Ma, W., Voegele, R. T., Kang, Z., & Guo, J. (2017). Host-Induced Gene Silencing of the MAPKK Gene PsFUZ7 Confers Stable Resistance to Wheat Stripe Rust. Plant physiology, 175(4), 1853–1863. https://doi.org/10.1104/pp.17.01223

    · Qi, T., Guo, J., Liu, P., He, F., Wan, C., Islam, M. A., Tyler, B. M., Kang, Z., & Guo, J. (2019). Stripe Rust Effector PstGSRE1 Disrupts Nuclear Localization of ROS-Promoting Transcription Factor TaLOL2 to Defeat ROS-Induced Defense in Wheat. Molecular plant, 12(12), 1624–1638. https://doi.org/10.1016/j.molp.2019.09.010

    · Qi, T., Zhu, X., Tan, C., Liu, P., Guo, J., Kang, Z., & Guo, J. (2018). Host-induced gene silencing of an important pathogenicity factor PsCPK1 in Puccinia striiformis f. sp. tritici enhances resistance of wheat to stripe rust. Plant biotechnology journal, 16(3), 797–807. https://doi.org/10.1111/pbi.12829

     

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    地址:四川省绵阳市高新区绵兴西路166号 | 电话:0816-2579941 | 传真:0816-2579941 | 邮箱:mszxst@163.com