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个人简介

现为中山大学生命科学学院教授、博士生导师,有害生物控制与资源利用国家重点实验室PI、2006年入选教育部“新世纪优秀人才支持计划”。现任《植物生理学报》编委,中国植物学会植物结构与生殖生物学专业委员会委员、中国电子显微镜学会共聚焦专业委员会委员等。 2005/9 -现在: 中山大学生命科学学院("百人计划"引进人才) 2002/5-2005/8, 美国芝加哥大学 博士后 1998/10–2002/3,日本神户大学博士 1997/4-1998/8, 日本东京IKARI消毒株式会社(开发中心) 1994/4–1997/3, 日本神户大学 硕士 1984/9–1988/7,北京农业大学(现中国农业大学) 学士

研究领域

植物鞘脂代谢调控 植物抗病生理与信号转导

近期论文

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1. Zheng, P., Wu, J-X., Sahu, S.K., Zeng, H-Y., Huang, L.Q., Liu, Z., Xiao, S. and Yao N*. (通讯作者) (2018) Loss of alkaline ceramidase inhibits autophagy in Arabidopsis and plays an important role during environmental stress response. Plant Cell Environ. DOI: 10.1111/pce.13148. 2. Li J., Yin J., Rong C., Li K-E., Wu J-X., Huang L-Q., Zeng H-Y., Sahu S.K., Yao N*. (通讯作者) (2016) Orosomucoid proteins interact with the small subunit of serine palmitoyltransferase and contribute to sphingolipid homeostasis and stress responses in Arabidopsis. Plant Cell, 28: 3038–3051. DOI: 10.1105/tpc.16.00574 3. Wu J-X., Wu J-L., Yin J., Zheng P., and Yao, N.*(通讯作者) (2015) Ethylene modulates sphingolipid synthesis in Arabidopsis. Front. Plant Sci., 6 :1122 4. Li J., Bi F-C., Yin J., Wu J-X., Rong C., Wu J-L., Yao N*. (通讯作者) (2015) An Arabidopsis neutral ceramidase mutant ncer1 accumulates hydroxyceramides and is sensitive to oxidative stress. Front. Plant Sci. 6:460. doi: 10.3389/fpls.2015.00460. 5. Sun, T-J., Lu, Y., Narusaka, M., Shi, C., Yang, Y-B., Wu, J-X., Zeng, H-Y., Narusaka , Y*., and Yao, N. * (通讯作者) (2015) A Novel Pyrimidin-Like Plant Activator Stimulates Plant Disease Resistance and Promotes Growth. PLoS ONE 10(4): e0123227. DOI: 10.1371/journal.pone.0123227 6. Shi C, Yin J, Liu Z, Wu J-X, Zhao Q, Ren J and Yao N* (通讯作者) (2015) A systematic simulation of the effect of salicylic acid on sphingolipid metabolism. Front. Plant Sci. 6:186. doi: 10.3389/fpls. 7. Wu, J-X, Li, J., Liu, Z., Yin, J., Chang, Z-Y., Rong, C., Wu, J-L., Bi, F-C. and Yao, N.*(通讯作者) (2015) The Arabidopsis ceramidase AtACER functions in disease resistance and salt tolerance. Plant Journal, 81, 767–780. 8. Bi, F-C., Liu, Z., Wu, J-X., Liang, H., Xi, X-L., Fang, C., Sun, T-J., Yin, J., Dai, G-Y., Rong, C., Greenberg, J.T., Su, W-W., and Yao, N.* (通讯作者) (2014) Loss of ceramide kinase in Arabidopsis impairs defenses and promotes ceramide accumulation and mitochondrial H2O2 burst. Plant Cell, 26:3449-3467. 9. Luo,D., Xu,H., Liu, Z., Guo, J., Li, H., Chen, L., Fang, C., Zhang, O., Bai,M., Yao, N., Wu, H., Wu,H., Ji, C., Zheng, H., Chen, Y., Ye, S., Li, X., Zhao, X., Li, R. and Liu, YG. (2013)A detrimental mitochondrial-nuclear interaction causes cytoplasmic male sterility in rice. Nature Genetics,45, 573–577 10. Bi, F.-C., Zhang, Q.-F., Liu, Z., Fang, C., Li, J., Su, J.-B., Greenberg, J.T., Wang H.-B. and Yao, N.* (通讯作者) (2011) A conserved cysteine motif is critical for rice ceramide kinase activity and function. PLoS ONE 6(3): e18079. 11. Shen, C.-X., Zhang, Q.-F, Li, J., Bi, F.-C., and Yao, N. *(通讯作者) (2010) Induction of programmed cell death in Arabidopsis and rice by single-wall carbon nanotubes. American Journal of Botany 97: 1602-1609. 12. Jelenska, J., Yao, N., Vinatzer, B.A., Wright, C.M., Brodsky, J.L. and Greenberg, J.T. (2007) A J domain virulence effector of Pseudomonas syringae remodels host chloroplasts and suppresses defenses. Current Biology 17: 499-508. 13. Yao, N. and Greenberg, J.T. (2006) Arabidopsis Accelerated Cell Death2 modulates programmed cell death. Plant Cell 18: 397-411. 14. Yao, N., Eisfelder, B.J., Marvin, J. and Greenberg, J.T. (2004) Mitochondrion – an organelle commonly involved in programmed cell death in Arabidopsis thaliana. Plant Journal 40: 596-610. 15. Greenberg, J.T. and Yao, N. (2004) The role and regulation of programmed cell death in plant-pathogen interactions. Cellular Microbiology 6: 201-211. 16. Liang, H., Yao, N., Song, J.T., Luo, S., Lu, H. and Greenberg, J.T. (2003) Ceramides modulate programmed cell death in plants. Genes & Development 17: 2636-2641. 17. Yao, N., Imai, S., Tada, Y., Tosa, Y., Nakayashiki, H., Park, P. and Mayama, S. (2002) Apoptotic cell death is a common response to pathogen attack in oats. Mol. Plant-Microbe Interaction 15: 1000-1007. 18. Yao, N., Tada, Y., Sakamoto, M., Nakayashiki, H., Park, P., Tosa, Y. and Mayama, S. (2002) Mitochondrial oxidative burst involved in apoptotic response in oats. Plant Journal 30: 567-579. 19. Yao, N., Tada, Y., Park, P., Nakayashiki, H., Tosa, Y. and Mayama, S. (2001) Novel evidence for apoptotic cell response and differential signals in chromatin condensation and DNA cleavage in victorin-treated oats. Plant Journal 28: 13-26.

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