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Institute of Plant Protection
Chinese Academy of Agricultural Sciences, Beijing 100193, China
E-mail: ningyuese@caas.cn
https://www.researchgate.net/profile/Yuese_Ning
Area of expertise: rice immunity, plant-pathogen interaction, plant immunity, biotic stress, ubiquitination
Selected Publications:
Zhang, C., F, H., Wang, J., Tao, H., Wang, D., Qin, M., He, F., Wang, R., Wang, G.L., and Ning, Y. (2024). The rice E3 ubiquitin ligase-transcription factor module targets two trypsin inhibitors to enhance broad-spectrum disease resistance. Dev. Cell. DOI: 10.1016/j.devcel.2024.05.003.
You, X., Zhu, S., Sheng, H., Liu, Z., Wang, D., Wang, M., Xu, X., He, F., Fang, H., Zhang, F., Wang, D., Hao, Z., Wang, R., Xiao, Y., Wan, J., Wang, G.L., and Ning, Y. (2023). The rice peroxisomal receptor PEX5 negatively regulates resistance to rice blast fungus Magnaporthe oryzae. Cell Rep. 42: 113315.
Wang, R., You, X., Zhang, C., Fang, H., Wang, M., Zhang, F., Kang, H., Xu, X., Liu, Z., Wang, J., Zhao, Q., Wang, X., Hao, Z., He, F., Tao, H., Wang, D., Wang, J., Fang, L., Qin, M., Zhao, T., Zhang, P., Xing, H., Xiao, Y., Liu, W., Xie, Q., Wang, G.L., and Ning, Y. (2022). An ORFeome of rice E3 ubiquitin ligases for global analysis of the ubiquitination interactome. Genome Biol. 23: 154.
Zhang, F., Fang, H., Wang, M., He, F., Tao, H., Wang, R., Long, J., Wang, J., Wang, G.L., and Ning, Y. (2022). APIP5 functions as a transcription factor and an RNA-binding protein to modulate cell death and immunity in rice. Nucleic Acids Res. 50: 5064–5079.
Hao, Z., Tian, J., Fang, H., Fang, L., Xu, X., He, F., Li, S., Xie, W., Du, Q., You, X., Wang, D., Chen, Q., Wang, R., Zuo, S., Yuan, M., Wang, G.L., Xia, L., and Ning, Y. (2022). A VQ-motif- containing protein fine-tunes rice immunity and growth by a hierarchical regulatory mechanism. Cell Rep. 40: 111235.
You, X., Zhang, F., Liu, Z., Wang, M., Xu, X., He, F., Wang, D., Wang, R., Wang, Y., Wang, G., Chu C., Wang, G.L., and Ning, Y. (2022). Rice catalase OsCATC is degraded by E3 ligase APIP6 to negatively regulate immunity. Plant Physiol. 190: 1095–1099.
Fang, H., Zhang, F., Zhang, C., Wang, D., Shen, S., He, F., Tao, H., Wang, R., Wang, M., Wang, D., Liu, X., Luo, J., Wang, G.L., and Ning, Y. (2022). Function of hydroxycinnamoyl transferases for the biosynthesis of phenolamides in rice resistance to Magnaporthe oryzae. J. Genet. Genomics 49: 776–786.
Fang, H., Shen, S., Wang, D., Zhang, F., Zhang, C., Wang, Z., Zhou, Q., Wang, R., Tao, H., He, F., Yang, C., Peng, M., Jing, X., Hao, Z., Liu, X., Luo, J., Wang, G.L., and Ning, Y. (2021). A monocot- specific hydroxycinnamoylputrescine gene cluster contributes to immunity and cell death in rice. Sci. Bull. 66: 2381–2393.
Tao, H., Shi, X., He, F., Wang, D., Xiao, Ning., Fang, H., Wang, R., Zhang, F., Wang, M., Li, A., Liu, X., Wang, G.L., and Ning, Y. (2021). Engineering broad-spectrum disease-resistant rice by editing multiple susceptibility genes. J Integr. Plant Biol. 63: 1639–1648.
Zhang, C., Fang, H., Shi, X., He, F., Wang, R., Fan, J., Bai, P., Wang, J., Park, C.H., Bellizzi, M., Zhou X., Wang, G.L., and Ning, Y. (2020). A fungal effector and a rice NLR protein have antagonistic effects on a Bowman–Birk trypsin inhibitor. Plant Biotechnol. J.18: 2354–2363.
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