苟明月,二级教授,博士生导师。现任小麦玉米两熟高效生产全国重点实验室副主任、国家玉米改良(郑州)分中心副主任。在中国农业大学获得博士学位,先后在美国康奈尔大学和布鲁海文国家实验室从事植物抗病和细胞壁合成机制研究工作。现主要开展玉米抗病(逆)与产量协同提升机制研究与分子育种工作,在玉米广谱抗病性及抗倒伏性研究中取得重要进展。发现CPR30/CPR1、BON1、HSC70、SIZ1、ZmBON1、ZmSKI3等基因调控植物抗病防御反应及生长发育的新机制;阐明了MSBP、CB5D、KFB、MYB107、ZmNST2、ZmKCS12等基因介导细胞壁(木质素、木栓质、蜡质)合成新机制。主持和参与国家自然科学基金联合基金重点项目、面上项目、国家重点研发专项课题等科研项目15项,在Nature Communications、Nature Plants、Trends in Plant Science、Plant Cell、EMBO Journal、Plant Biotechnology Journal、Journal of Integrative Plant Biology、Plant Journal、Plant Physiology、Journal of Experimental Botany、The Crop Journal等期刊发表论文40余篇,论文被引用2600余次。担任中国作物学会玉米专业委员会委员、中国农学会青年工作委员会委员、河南省遗传学会理事、河南省植物病理学会理事等学术兼职。入选农业农村部神农青年英才、中原基础研究领军人才、河南省杰青(及首批滚动支持)、河南省特聘教授、河南省高层次人才。
联系方式:
电话:0371-56990319
邮箱:
mingyuegou@henau.edu.cn
地址:郑州市郑东新区平安大道218号河南农业大学龙子湖校区第一实验楼南405
网页:
https://www.researchgate.net/profile/Mingyue-Gou
https://scholar.google.com/citations?user=0jFPU1IAAAAJ&hl=en(谷歌学术)
教育与研究/工作经历:
2025年-至今,小麦玉米两熟高效生产全国重点实验室,副主任
2021年-至今,国家玉米改良中心郑州分中心,副主任
2021-2025年,河南农业大学作物基因组学与分子育种中心,主任
2017年-至今 河南农业大学教授,河南省特聘教授;
2012-2018年 美国布鲁克海文国家实验室生物系,副研究员(RA);
2009-2012年 美国康奈尔大学植物系,博士后;
2003-2009年 中国农业大学生物学院,硕博连读;
1999-2003年 西南农业大学(现西南大学)农学院,本科。
研究方向:
玉米抗病(逆)与产量协同提升机制研究与分子育种
主要研究内容:
1、玉米抗病基因挖掘与分子机制解析;
2、玉米抗倒伏基因挖掘与分子机制解析;
3、植物细胞壁(木质素、木栓质、蜡质)合成机制研究;
4、植物生长与抗病平衡机理研究;
5、玉米基因编辑及分子育种。
主要荣誉及奖励:
1、2025年度农业农村部神农青年英才;
2、2025年度河南省杰出青年科学基金滚动支持;
3、2025年度河南省高校科技创新团队;
4、2025年度“挑战杯”河南省大学生课外学术科技作品竞赛特等奖指导教师;
5、2025年度河南农业大学优秀班主任;
6、2023年度“中原英才计划”-中原基础研究领军人才;
7、2023年度“挑战杯”河南省大学生课外学术科技作品竞赛一等奖指导教师;
8、2022年度河南农业大学优秀教师;
9、2022年度河南农业大学本科优秀毕业论文指导教师;
10、2021年度“挑战杯”河南省大学生课外学术科技作品竞赛二等奖指导教师;
11、2021年度河南省杰出青年科学基金获得者;
12、2020年度河南省高层次人才;
13、2019年度“中原千人计划”-中原青年拔尖人才;
14、2017年度河南省特聘教授。
主要科研项目:
1、国家自然科学基金联合基金重点项目:玉米利用木质素抵御主要真菌病害的分子机制研究(U24A20395),2025-2028,主持
2、国家自然科学基金面上项目:玉米四跨膜蛋白ZmTET1介导南方锈病和弯孢叶斑病抗性分子机制研究(32372208),2024-2027,主持
3、国家自然科学基金联合基金重点项目:黄淮地区玉米叶部病害广谱抗病基因克隆与广谱抗性机制解析(U2004207),2021-2024,主持
4、国家重点研发专项:“玉米宜籽粒机收抗逆高产基因资源挖掘与利用”项目“玉米适宜籽粒机收关键基因位点挖掘与应用”课题(2023YFD1200501),2023-2027,课题主持
5、国家重点研发专项:“玉米抗病虫高产基因资源挖掘与利用”项目“玉米抗病虫高产基因的生物育种应用”课题(2022YFD1201801),2022-2027,子课题主持
6、河南省杰出青年科学基金滚动支持项目:玉米抵抗多种类型真菌病害机制解析及种质创制,2025-2027,主持
7、河南省高校科技创新团队:玉米抗病性与产量协同提升创新团队,2026-2028,主持
8、中原英才计划(育人系列)-中原基础研究领军人才项目,2024-2026,主持
9、河南省杰出青年科学基金项目:BLES10调控玉米广谱抗病性机制解析及其育种应用(212300410007),2021-2023,主持
10、“中原千人计划”中原青年拔尖人才项目:作物抗病与细胞壁合成机制研究(ZYQR201912168),2020-2022,主持
11、河南省重大科技专项:玉米关键性状优异基因挖掘与新品种选育(221100110300),2022-2024,参与
12、美国能源部(DOE)专项:Metabolic plasticity, macromolecular organization, and post-translational regulation of lignin biosynthesis (DE-SC0012704),2012 -2020,参与
13、美国国家自然科学基金(NSF)项目:Molecular mechanisms underlying temperature modulation of defense responses (0919914), 2009 -2013,参与
14、美国国家自然科学基金(NSF)项目:Regulation of a resistance gene by BON1 in Arabidopsis (0642289), 2007 -2010,参与
15、国家高技术研究发展计划(863计划)项目:玉米抗旱性形成的遗传调控研究(2006AA10Z103),2006-2010,参与
讲授课程:
博士研究生:作物抗病与抗逆生物学、作物逆境生物学
硕士研究生:植物生物技术
本科生:分子生物学、农业微生物学、农业环境与人类健康
发表论文:
1. Wu, Y., Yu, Y., Zhou, J., Wei, Q., Wang, K., Liu, G., Liu, Y. and
Gou, M. (
2026) Two glutathione S-transferase genes confer resistance to
Gibberella ear rot and stalk rot in maize.
Plant Biotechnology Journal. DOI: 10.1111/pbi.70541
2. Li, J., Yu, Y., Zhang, Y. and
Gou, M. (2025) Sophisticated regulation of broad-spectrum disease resistance in maize.
Trends in Plant Science 30, 579-581.
3. Mu, X., Zhang, L., Li, Y., Yang, Z., Li, M., Wang, Y., Ma, Z., Zhang, Y., Zhang, Z., Hu, X., Li, H., Niu, H., Tang, J. and
Gou, M. (2025) Hunting for the genetic loci underlying root lodging resistance by BSR-seq and QTL mapping in maize.
BMC Plant Biology 25, 1584.
4. Wang, J., Tuo, H., Cheng, P., Chen, F., Li, Y., Yuan, M., Lin, W., Bao, X., Sun, J., Guo, Y., Wang, Z., Wang, Y., Li, H., Mu, X., Zhang, Q., Yu, Y. and
Gou, M. (2025) Boosting lignocellulosic bioethanol production: fermentation of corn stalk using a lignin-reduced brown midrib 2 maize mutant.
Biotechnology for Biofuels and Bioproducts 19, 1.
5. Wang, Y., He, C., Wang, Q., Li, R., Qin, Y., Wang, H.,
Gou, M., Zhang, X., Li, H., Huang, Q., Liu, X., Yang, J., White, F.F., Fu, J., Liu, S. and Zheng, J.
(2025) Large DNA and protein language modelsenhance discovery of deleterious mutationsin maize.
Genome Biology 26, 412.
6. Li, Q., Lai, J., Chen, J., Li, L., Song, W., Xin, B., Zhao, H., Xiao, Y., Tian, F., Li, G., Liang, Y., Liu, L., Tan, B., Wang, B., Wu, Y., Yang, X., Di, H., Ma, Z., Song, R., Zhan, J., Zhang, X., Qin, F., Chen, Y., Dai, M., Jiang, C., Shi, Y., Wang, Y., Wu, Q., Yang, S., Yuan, L., Zhang, M., Zhao, H., Xu, M., Chen, J., Ding, J., Duan, C., Gao, X.,
Gou, M., … and Yan, J.
(2025) Decades' progress and prospects on maize functional genomics and molecular breeding.
SCIENCE CHINA Life Sciences. DOI: 10.1007/s11427-025-3022-6
7. Jing, T., Wu, Y., Yu, Y., Li, J., Mu, X., Xu, L., Wang, X., Qi, G., Tang, J., Wang, D., Yang, S., Hua, J. and
Gou, M. (2024) Copine proteins are required for brassinosteroid signaling in maize and Arabidopsis.
Nature Communications 15, 2028.
8. Wang, Y., Xing, Y., Yang, X., Yu, Y., Li, J., Zhao, C., Yuan, M., Huang, W., Yin, Y., Liu, G., Sun, Y., Li, H., Tang, J., Zhang, Q. and
Gou, M. (2024) Knockout of
ZmNST2 promotes bioethanol production from corn stover.
Plant Biotechnology Journal 22, 3099-3101.
9. Gao, J., Zhang, N., Liu, G., Tian, J., Chen, M., Wang, Y., Xing, Y., Zhang, Y., Zhao, C., Mu, X., Yu, Y., Niu, H., Li, J., Tang, J. and
Gou, M. (2024) Regulation of maize growth and immunity by ZmSKI3-mediated RNA decay and post-transcriptional gene silencing.
Journal of Integrative Plant Biology 66, 2561-2577.
10. Xu, L., Hao, J., Lv, M., Liu, P., Ge, Q., Zhang, S., Yang, J., Niu, H., Wang, Y., Xue, Y., Lu, X., Tang, J., Zheng, J. and
Gou, M. (2024) A genome-wide association study identifies genes associated with cuticular wax metabolism in maize.
Plant Physiology 194, 2616-2630.
11. Li, J., Fan, T., Zhang, Y., Xing, Y., Chen, M., Wang, Y., Gao, J., Zhang, N., Tian, J., Zhao, C., Zhen, S., Fu, J., Mu, X., Tang, J., Niu, H. and
Gou, M. (2024) Characterization and fine mapping of a maize lesion mimic mutant (
Les8) with enhanced resistance to Curvularia leaf spot and southern leaf blight.
Theoretical and Applied Genetics 137, 7.
12. Yang, J., Li, M., Yin, Y., Liu, Y., Gan, X., Mu, X., Li, H., Li, J., Li, H., Zheng, J. and
Gou, M. (2024) Spatial accumulation of lignin monomers and cellulose underlying stalk strength in maize.
Plant Physiology and Biochemistry 214, 108918.
13. Bai, Y., Ni, C., Liu, S.,
Gou, M., Yu, X., Zhu, Y., Jiang, T., Jia, X., Liu, Y., Nan, F., Li, L., Tekinerdogan, B., Yang Song, Liuc, Q. and Jin, X.
(2024) Comprehensive analysis of hyperspectral features for monitoring canopy maize leaf spot disease.
Computers and Electronics in Agriculture 225, 109350.
14. Gou, M., Balint-Kurti, P., Xu, M. and Yang, Q.
(2023) Quantitative disease resistance: Multifaceted players in plant defense.
Journal of Integrative Plant Biology 65, 594-610.
15. Zhao, X., Zhao, Y.,
Gou, M. and Liu, C.J.
(2023) Tissue-preferential recruitment of electron transfer chains for cytochrome P450-catalyzed phenolic biosynthesis.
Science Advances 9, eade4389.
16. Jin, H., Han, X., Wang, Z., Xie, Y., Zhang, K., Zhao, X., Wang, L., Yang, J., Liu, H., Ji, X., Dong, L., Zheng, H., Hu, W., Liu, Y., Wang, X., Zhou, X., Zhang, Y., Qian, W., Zheng, W., Shen, Q.,
Gou, M. and Wang, D.
(2022) Barley GRIK1-SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection.
EMBO Journal 41, e110521.
17. Li, J., Chen, M., Fan, T., Mu, X., Gao, J., Wang, Y., Jing, T., Shi, C., Niu, H., Zhen, S., Fu, J., Zheng, J., Wang, G., Tang, J. and
Gou, M. (2022) Underlying mechanism of accelerated cell death and multiple disease resistance in a maize lethal leaf spot 1 allele.
Journal of Experimental Botany 73, 3991-4007.
18. Yu, Y., Zhang, T., Sun, J., Jing, T., Shen, Y., Zhang, K., Chen, Y., Ding, D., Wang, G., Yang, J., Tang, J., Shi, Z., Wang, D. and
Gou, M. (2022) Evolutionary characterization of miR396s in Poaceae exemplified by their genetic effects in wheat and maize.
Plant Science 325, 111465.
19. Sun, G., Yang, L., Zhan, W., Chen, S., Song, M., Wang, L., Jiang, L., Guo, L., Wang, K., Ye, X.,
Gou, M., Zheng, X., Yang, J. and Yan, Z.
(2022) HFR1, a bHLH Transcriptional Regulator from Arabidopsis thaliana, Improves Grain Yield, Shade and Osmotic Stress Tolerances in Common Wheat.
International Journal of Molecular Sciences 23,12057.
20. Mu, X., Dai, Z., Guo, Z., Zhang, H., Yang, J., Gan, X., Li, J., Liu, Z., Tang, J. and
Gou, M. (2022) Systematic dissection of disease resistance to southern corn rust by bulked-segregant and transcriptome analysis.
The Crop Journal 10, 426-435.
21. Mu, X., Li, J., Dai, Z., Xu, L., Fan, T., Jing, T., Chen, M. and
Gou, M. (2021) Commonly and Specifically Activated Defense Responses in Maize Disease Lesion Mimic Mutants Revealed by Integrated Transcriptomics and Metabolomics Analysis.
Frontiers in Plant Sciences 12, 638792.
22. Li, G., Wang, L., Yang, J., He, H., Jin, H., Li, X., Ren, T., Ren, Z., Li, F., Han, X., Zhao, X., Dong, L., Li, Y., Song, Z., Yan, Z., Zheng, N., Shi, C., Wang, Z., Yang, S., Xiong, Z., Zhang, M., Sun, G., Zheng, X.,
Gou, M., Ji, C., Du, J., Zheng, H., Dolezel, J., Deng, X.W., Stein, N., Yang, Q., Zhang, K. and Wang, D.
(2021) A high-quality genome assembly highlights rye genomic characteristics and agronomically important genes.
Nature Genetics 53, 574-584.
23. Gou, M., Yang, X., Zhao, Y., Ran, X., Song, Y. and Liu, C.J.
(2019) Cytochrome b5 Is an Obligate Electron Shuttle Protein for Syringyl Lignin Biosynthesis in Arabidopsis.
The Plant Cell 31, 1344-1366.
24. Gou, M., Ran, X., Martin, D.W. and Liu, C.J.
(2018) The scaffold proteins of lignin biosynthetic cytochrome P450 enzymes.
Nature Plants 4, 299-310.
25. Yang, D.L., Shi, Z., Bao, Y., Yan, J., Yang, Z., Yu, H., Li, Y.,
Gou, M., Wang, S., Zou, B., Xu, D., Ma, Z., Kim, J. and Hua, J.
(2017) Calcium Pumps and Interacting BON1 Protein Modulate Calcium Signature, Stomatal Closure, and Plant Immunity.
Plant Physiology 175, 424-437.
26. Gou, M., Hou, G., Yang, H., Zhang, X., Cai, Y., Kai, G. and Liu, C.J.
(2017a) The MYB107 transcription factor positively regulates suberin biosynthesis.
Plant Physiology 173, 1045-1058.
27. Gou, M., Huang, Q., Qian, W., Zhang, Z., Jia, Z. and Hua, J.
(2017b) Sumoylation E3 Ligase SIZ1 Modulates Plant Immunity Partly through the Immune Receptor Gene
SNC1 in Arabidopsis.
Molecular Plant-Microbe Interactions : MPMI 30, 334-342.
28. Gou, M., Zhang, Z., Zhang, N., Huang, Q., Monaghan, J., Yang, H., Shi, Z., Zipfel, C. and Hua, J.
(2015) Opposing Effects on Two Phases of Defense Responses from Concerted Actions of HEAT SHOCK COGNATE70 and BONZAI1 in Arabidopsis.
Plant Physiology 169, 2304-2323.
29. Zhang, X.,
Gou, M., Guo, C., Yang, H. and Liu, C.J.
(2015) Down-regulation of Kelch domain-containing F-box protein in Arabidopsis enhances the production of (poly)phenols and tolerance to ultraviolet radiation.
Plant Physiology 167, 337-350.
30. Liu, C.J., Cai, Y., Zhang, X.,
Gou, M. and Yang, H.
(2014) Tailoring lignin biosynthesis for efficient and sustainable biofuel production.
Plant Biotechnology Journal 12, 1154-1162.
31. Wang, X.,
Gou, M., Bu, H., Zhang, S. and Wang, G.
(2014) Proteomic analysis of Arabidopsis constitutive expresser of pathogenesis-related gene 1 (
Cpr30/cpr1-2) mutant
Plant Omics Journal 7, 142-151.
32. Zhang, K., Novak, O., Wei, Z.,
Gou, M., Zhang, X., Yu, Y., Yang, H., Cai, Y., Strnad, M. and Liu, C.J.
(2014) Arabidopsis ABCG14 protein controls the acropetal translocation of root-synthesized cytokinins.
Nature Communications 5, 3274.
33. Zhang, X.,
Gou, M. and Liu, C.J.
(2013) Arabidopsis Kelch repeat F-box proteins regulate phenylpropanoid biosynthesis via controlling the turnover of phenylalanine ammonia-lyase.
The Plant Cell 25, 4994-5010.
34. Gou, M. and Hua, J.
(2012) Complex regulation of an R gene
SNC1 revealed by auto-immune mutants.
Plant Signaling & Behavior 7, 213-216.
35. Gou, M., Shi, Z., Zhu, Y., Bao, Z., Wang, G. and Hua, J.
(2012) The F-box protein CPR1/CPR30 negatively regulates R protein SNC1 accumulation.
Plant Journal 69, 411-420.
36. Li, Y.,
Gou, M., Sun, Q. and Hua, J.
(2010) Requirement of calcium binding, myristoylation, and protein-protein interaction for the Copine BON1 function in Arabidopsis.
The Journal of Biological Chemistry 285, 29884-29891.
37. Zheng, J., Fu, J.,
Gou, M., Huai, J., Liu, Y., Jian, M., Huang, Q., Guo, X., Dong, Z., Wang, H. and Wang, G.
(2010) Genome-wide transcriptome analysis of two maize inbred lines under drought stress.
Plant Molecular Biology 72, 407-421.
38. Gou, M., Su, N., Zheng, J., Huai, J., Wu, G., Zhao, J., He, J., Tang, D., Yang, S. and Wang, G.
(2009) An F-box gene, CPR30, functions as a negative regulator of the defense response in Arabidopsis.
Plant Journal 60, 757-770.
39. Zhao, J., Sun, Z., Zheng, J., Guo, X., Dong, Z., Huai, J.,
Gou, M., He, J., Jin, Y., Wang, J. and Wang, G.
(2009) Cloning and characterization of a novel CBL-interacting protein kinase from maize.
Plant Molecular Biology 69, 661-674.
40. Zheng, J., Zhao, J.F., Zhang, J.P., Fu, J.J.,
Gou, M.Y., Dong, Z.G., Hou, W., Huang, Q.S. and Wang, G.Y.
(2006) Comparative expression profiles of maize genes from a water stress-specific cDNA macroarray in response to high-salinity, cold or abscisic acid.
Plant Science 170, 1125-1132.
41. 马文豪,王盈,葛启栋,陈梦瑶,李见坤,
苟明月 (2024) 玉米类病斑突变体
Lmm18 的表型与初定位分析.
玉米科学 32, 26-31,41.
42. 苟明月, 徐莉萍, 李广伟, 姬祥
(2024) “分子生物学”教学模式改革与实践—以河南农业大学新农科农学创新实验班为例.
教育教学论坛 52, 69-72.
43. 葛启栋, 张., 郝嘉欣, 马文豪, 吕梦凡, 徐莉萍*,
苟明月*
(2023) 天冬氨酸蛋白酶在植物免疫中的研究进展.
植物生理学报 59, 1863-1869.
44. 程相杰, 徐莉萍, 母小焕,
苟明月 (2022) 玉米天冬氨酸蛋白酶基因家族的鉴定与表达分析.
玉米科学 30, 53-62.
45. 白云凤, 王国英,
苟明月, 董志刚, 赵晋锋
(2006) 农杆菌介导玉米转基因的影响因素研究.
中国生态农业学报 14, 173-175.
46. 白云凤, 赵晋锋, 郑军, 张锦鹏, 王茅雁,
苟明月, 董志刚, 杨红春, 王国英
(2006) 反义外壳蛋白基因介导的抗SCMV转基因玉米研究.
作物学报 32, 661-665.
授权专利:
1.
Gou, M., Yu, Y., Sun, J., Zhang, T., Li, J., Mu, X., Xu, L. and Tang, J.
(2025) Maize Dual Regulatory Module for Regulating the Balance between Plant Growth and Disease Resistance.
荷兰发明专利 ,N2035090
2.
苟明月,母小焕,李萌,李见坤,于延文,徐莉萍,张战辉,李宇行,殷悦,张禄莹,汤继华
(2025),玉米ZmRLR2 基因在玉米抗倒伏中的应用,
中国发明专利,ZL202510082680.4
3.
苟明月,王盈,于延文,李见坤,邢烨,赵晨阳,袁梦雨
(2025),一种ZmNST2的突变基因及其突变体在玉米秸秆发酵生产生物乙醇中的应用,
中国发明专利,ZL202410052363.3
4.
苟明月,李见坤,王盈,母小焕,徐莉萍,于延文,汤继华,牛洪斌,马文豪
(2023),玉米双调控模块在调控植物生长和抗病平衡中的应用,
中国发明专利,ZL202210674892.8
5.
苟明月,荆腾,武玉莹,范田源,李见坤
(2022),控制玉米株高的基因、其编码的蛋白质以及应用,
中国发明专利,ZL202011490418.7
学术报告:
1.河南省植物病理学会2025年学术年会:玉米广谱抗病机制与育种应用思考,2026.01(新乡)
2.西南大学含弘作物学论坛暨作物学博士生国际论坛:玉米广谱抗病性机制解析及抗性与产量协同育种思考,2025.11(重庆)
3. 中国植物病理学会第十六届青年学术研讨会: 玉米广谱抗病性机制及育种应用思考, 2025.10(郑州)
4. 全国玉米制种智能装备展示现场会暨学术研讨会:玉米广谱抗病研究进展及育种应用展望,2025.07(张掖)
5. 中国作物学会作物种子专业委员会2025年学术年会暨种子产业技术发展大会:玉米广谱抗病性机制及分子育种策略探究,2025.08(昆明)
6. 安徽农业大学农学院“青年农学家论坛”系列学术报告:玉米广谱抗病性及生长与抗性协同机制研究,2025.05(合肥)
7. 第六届全国玉米抗病学术研讨会:基于不同类型类病斑突变体解析玉米广谱抗病性机制,2025.04(杨凌)
8. 第七届植物青年科学家论坛大会报告:Copine proteins are critical components of brassinosteriod signaling and immunity in maize and Arabidopsis, 2024(长沙)
9. 2024年全国玉米遗传育种学术研讨会报告:玉米广谱抗病性遗传机制解析与育种应用思考, 2024(济南)
10. 第七届全国玉米生物学学术研讨会报告:ZmSKI3 orchestrates plant growth and immunity in maize, 2024(南京)
11. 河南省遗传学会第八次会员代表大会暨2024年学术年会报告:Copine蛋白-植物油菜素内酯信号通路的新成员, 2024(郑州)
12. 西北农林科技大学生命科学研究进展系列讲座:玉米广谱抗病性研究进展,2024 (杨凌)
13. 国际产学研用合作会议暨第七届黄河国际论坛大会报告:Underlying mechanisms of multiple disease resistance (MDR) revealed by lesion mimic mutants in maize, 2023(郑州)
14. 第六届全国玉米生物学学术研讨会报告:The copine protein controls plant growth via regulating brassinosteroid signaling in maize, 2023(哈尔滨)
15. 第五届全国玉米抗病学术研讨会报告:基于不同类型类病斑突变体解析玉米广谱抗病性机制, 2023(哈尔滨)
16. 第四届全国玉米抗病学术研讨会报告:Commonly activated defense responses in disease lesion mimics mutants and their implication of multiple disease resistance in maize, 哈尔滨,2021(开封)
17. 植物逆境/棉花生物学国家重点实验室特邀报告: Autoimmunity, lignin biosynthesis and multiple disease resistance in Arabidopsis and maize, 2019(开封)
18. 河南省遗传学会年会特邀报告:植物自免疫和木质素合成机理研究对解析玉米广谱抗性机制的启示, 2019(安阳)
19. 中国植物病理学会第十四届青年学术研讨会报告:Sophisticated regulation of plant defense response revealed and to be revealed by autoimmune mutants, 2019(贵阳)
20. 第四届全国玉米生物学术研讨会报告: Autoimmune mutants: powerful model for maize defense-related studies, 2019(郑州)
21. 河南农业大学“绍骙论坛”特邀报告:植物抗病反应调控及细胞壁合成机理研究, 2018(郑州)
22. 中国农业大学、中国农业科学院作物所、河南农业大学等高校特邀报告:New insight into plant suberin and lignin biosynthesis, 2016(北京等)
23. 山东农业大学、西北农林科技大学、四川农业大学、华南植物园等单位特邀报告:植物抗病及细胞壁合成的分子机理,2016(泰安等)
24. 美国布鲁克海文国家实验室青年科学家论坛(YRS)大会报告:Transcriptional regulation of suberin biosynthesis gene expression,2015(纽约)
25. 美国布鲁克海文国家实验室青年科学家论坛(YRS)大会报告:New insight into the metabolon formation of P450s in lignin biosynthesis,2014(纽约)