当前位置: X-MOL首页全球导师 国内导师 › 成玉林

个人简介

2005.09—2009.07 西北农林科技大学 植物保护学院 学士 (导师:康振生 院士) 2009.09—2015.07 西北农林科技大学 植物保护学院 博士 (导师:康振生 院士) 2015.07—2017.07 西北农林科技大学 生命科学学院 博士后 (导师:康振生 院士) 2017.07—现在 重庆大学 生命科学学院 副研究员

研究领域

植物学和植物病理学。具体以番茄、柑橘和菊花等为研究对象,开展果实品质及植物-微生物互作的分子生物学研究。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Cheng, Y.#, Wu, K.#, Yao, J., Li, S., Wang, X., Huang, L., & Kang, Z. (2017). PSTha5a23, a candidate effector from the obligate biotrophic pathogen Puccinia striiformis f. sp. tritici, is involved in plant defense suppression and rust pathogenicity. Environmental Microbiology, 19(5), 1717-1729. 2. Cheng, Y., Wang, W., Yao, J., Huang, L., Voegele, R. T., Wang, X., & Kang, Z. (2016). Two distinct Ras genes from Puccinia striiformis exhibit differential roles in rust pathogenicity and cell death. Environmental Microbiology, 18(11), 3910-3922. (封面文章) 3. Cheng, Y.#, Yao, J.#, Zhang, Y., Li, S., & Kang, Z. (2016). Characterization of a Ran gene from Puccinia striiformis f. sp. tritici involved in fungal growth and anti-cell death. Scientific Reports, 6. 4. Cheng, Y., Wang, X., Yao, J., Voegele, R. T., Zhang, Y., Wang, W., ... & Kang, Z. (2015). Characterization of protein kinase PsSRPKL, a novel pathogenicity factor in the wheat stripe rust fungus. Environmental Microbiology, 17(8), 2601-2617. 5. Cheng, Y., Yao, J., Zhang, H., Huang, L., & Kang, Z. (2015). Cytological and molecular analysis of nonhost resistance in rice to wheat powdery mildew and leaf rust pathogens. Protoplasma, 252(4), 1167-1179. 6. Cheng, Y.#, Zhang, H.#, Yao, J., Han, Q., Wang, X., Huang, L., & Kang, Z. (2013). Cytological and molecular characterization of non-host resistance in Arabidopsis thaliana against wheat stripe rust. Plant Physiology and Biochemistry, 62, 11-18. 7. Cheng, Y., Zhang, H., Yao, J., Wang, X., Xu, J., Han, Q., ... & Kang, Z. (2012). Characterization of non-host resistance in broad bean to the wheat stripe rust pathogen. BMC Plant Biology, 12(1), 96. 8. Yao, J., Yu, D., Cheng, Y. *, & Kang, Z*. Histological and cytological studies of plant infection by Erysiphe euonymi-japonici. 2018, Protoplasma, 1-8. 9. Kang, Z., Tang, C., Zhao, J., Cheng, Y., Liu, J., Guo, J., ... & Chen, X. (2017). Wheat-Puccinia striiformis interactions. In Stripe Rust (pp. 155-282). Springer, Dordrecht.(英文专著) 10. Zhao, J., Yang, Y., Yang, D., Cheng, Y., Jiao, M., Zhan, G., ... & Kang, Z. (2016). Characterization and genetic analysis of rice mutant crr1 exhibiting compromised non-host resistance to Puccinia striiformis f. sp. tritici (Pst). Frontiers in Plant Science, 7. 11. Tang, C., Wang, X., Cheng, Y., Zhao, M., Wei, J., & Kang, Z. (2015). New insights in the battle between wheat and Puccinia striiformis. Frontiers of Agricultural Science and Engineering, 2(2), 101-114. 12. Zheng, W., Huang, L., Huang, J., Wang, X., Chen, X., Zhao, J., Guo, J., Zhuang, H., Qiu, C., Liu, J., Liu, H., Huang, X., Pei, G., Zhan, G., Tang, C., Cheng, Y., ... & Kang, Z. (2013). High genome heterozygosity and endemic genetic recombination in the wheat stripe rust fungus. Nature Communications, 4, 2673. 13. Duan, X., Wang, X., Fu, Y., Tang, C., Li, X., Cheng, Y., ... & Kang, Z. (2013). TaEIL1, a wheat homologue of AtEIN3, acts as a negative regulator in the wheat–stripe rust fungus interaction. Molecular Plant Pathology, 14(7), 728-739. 14. Liu, F., Guo, J., Bai, P., Duan, Y., Wang, X., Cheng, Y., ... & Kang, Z. (2012). Wheat TaRab7 GTPase is part of the signaling pathway in responses to stripe rust and abiotic stimuli. PLoS One, 7(5), e37146. 15. Zhang, H., Wang, C., Cheng, Y., Chen, X., Han, Q., Huang, L., ... & Kang, Z. (2012). Histological and cytological characterization of adult plant resistance to wheat stripe rust. Plant Cell Reports, 31(12), 2121-2137. 16. Zhang, H., Wang, C., Cheng, Y., Wang, X., Li, F., Han, Q., ... & Kang, Z. (2011). Histological and molecular studies of the non-host interaction between wheat and Uromyces fabae. Planta, 234(5), 979.

推荐链接
down
wechat
bug