目录
主要研究方向为植物病原细菌的致病机制,植物病原细菌与植物互作机制。目前以第一作者或者共同第一作者发表SCI论文5篇,其中中科院一区4篇;主持国家自然科学基金青年项目一项。
2015.09-2020.08 南京农业大学 植物病理学 农学博士
2011.09-2015.06 青岛农业大学 植物保护 农学学士
2018.02-2019.10 威斯康辛大学麦迪逊分校(美国) 表观遗传学 博士联培
2. 第十七届中国农药工业协会科学技术奖——技术发明一等奖(排名第八) (2024)
1. 国家自然科学基金青年项目,2023- 2025
2. 广东省自然科学基金面上项目,2025-2028
3. 绿色农药国家重点实验室研究课题,2024-2026
4. 广东省植物保护新技术重点实验室开放基金项目,2024-2026
2. Wang B, Wu G, Zhang Y, Qian G, Liu F. Dissecting the virulence-related functionality and cellular transcription mechanism of a conserved hypothetical protein in Xanthomonas oryzae pv. oryzae. Mol Plant Pathol 2018; 19: 1859–1872.( JCR Q1, 农林科学一区 Top,IF: 5.663)
3. Wang B#, Wu G#, Li K, Ling J, Zhao Y, Liu F. A glycoside hydrolase family 99-like domain-containing protein modifies outer membrane proteins to maintain Xanthomonas pathogenicity and viability in stressful environments. Phytopathology 2021; 111: 929–939.( JCR Q1, 农林科学二区,IF: 4.025)
4. Wang B, Li K, Wu G, Xu Z, Hou R, Guo B, Zhao Y, Liu F. Sulforaphane, a secondary metabolite in crucifers, inhibits the oxidative stress adaptation and virulence of Xanthomonas by directly targeting OxyR. Mol Plant Pathol 2022 ( JCR Q1, 农林科学一区 Top,IF: 5.663)
5. Wang B#, Xu Z#, Zhao Y, Wu G, Li K, Hou R, Guo B, Tang B, Zhao Y, Liu F. SstF, a novel sulforaphane sensing transcription factor of Xanthomonas campestris, is required for sulforaphane tolerance and virulence. Mol Plant Pathol 2023 (Accepted) .( JCR Q1, 农林科学一区 Top,IF: 5.663)
6. Wu G, Zhang Y, Wang B et al. Proteomic and Transcriptomic Analyses Provide Novel Insights into the Crucial Roles of Host-Induced Carbohydrate Metabolism Enzymes in Xanthomonas oryzae pv. oryzae Virulence and Rice-Xoo Interaction. Rice 2021; 14.(JCR Q1, 农林科学一区 Top,IF: 4.783)
7. Su P, Song Z, Wu G,Zhao Y, Zhang Y, Wang B,et al. Insights into the roles of two genes of the histidine biosynthesis operon in pathogenicity of Xanthomonas oryzae pv. oryzicola. Phytopathology 2018; 108: 542–551.(JCR Q1, 农林科学二区,IF: 4.025)
8. Zhang Y, Wu G, Palmer I,Wang B, et al. The Role of a Host-Induced Arginase of Xanthomonas oryzae pv. oryzae in Promoting Virulence on Rice. Phytopathology 2019; 109: 1869–1877. (JCR Q1, 农林科学二区,IF: 4.025)
9. Li K, Xu G, Wang B, Wu G, Hou R, Liu F. The predatory soil bacterium Lysobacter reprograms quorum sensing system to regulate antifungal antibiotic production in a cyclic-di-GMP-independent manner. Commun Biol 2021; 4: 1–12. (JCR Q1, 中科院生物二区,IF: 6.268)
10. Wu G, Su P, Wang B, Zhang Y, Qian G, Liu F. Novel insights into Tat pathway in Xanthomonas oryzae pv. oryzae stress adaption and virulence: Identification and characterization of Tat-dependent translocation proteins. Phytopathology 2017; 107: 1011–1021. (JCR Q1, 农林科学二区,IF: 4.025)
11. Xu, Z., Wu, G., Wang, B., Zhao, Y., & Liu, F. TrpR-like protein PXO_00831, regulated by the sigma factor RpoD, is involved in motility, oxidative stress tolerance, and virulence in Xanthomonas oryzae pv. oryzae. Phytopathology 2022;Online (JCR Q1, 农林科学二区,IF: 4.025)
目在读研究生3人,本科生7人。
本科生:
23级: 王莉菱 王雪 蓝泉锐
22级: 韦斌斌 刘超宁 胡金龙
21级: 王茹暄
研究生
24级: 陈 可 朱宝如 杨维静