教育经历 :
2002/9 - 2005/6,中国农业大学,农业昆虫与害虫防治,博士
1999/9 - 2002/6,贵州大学,农药学,硕士
1995/9 - 1999/6,山东农业大学,植物保护,学士
2013/9 - 2014/3,美国奥本大学,昆虫与植物病理系,访问学者
工作经历 :
2014/8 - 至今,南京林业大学,林学院,教授
2014/6 - 2014/7,南京林业大学,林学院,副教授
2008/7 - 2014/6,南京林业大学,森林资源与环境学院,副教授
2005/7 - 2008/6,南京林业大学,森林资源与环境学院,讲师
1白蚁的生物防治及新型生物药剂的研发
围绕白蚁与生防菌的互作关系开展研究。一方面,利用生防菌对白蚁进行生物防治。另一方面,研究白蚁对生防菌的免疫机制,研发白蚁RNA生物农药及其他新型生物药剂。
2 杨树食叶害虫的新型生物药剂的研发
针对杨小舟蛾和美国白蛾等重要的杨树食叶害虫,研究昆虫与植物的互作机制,昆虫与生防菌的互作机制,研发杨树食叶害虫RNA生物农药及其他新型生物药剂。
1、CYP9A318介导杨小舟蛾适应单宁酸胁迫的分子机制及调控(32371883),国家自然科学基金,50万,2024.1-2027.12,主持
2、单宁诱导杨小舟蛾谷胱甘肽S-转移酶基因表达调控机制(31370652),国家自然科学基金,82万,2014.1-2017.12,主持
3、杨小舟蛾取食诱导杨树防御机制的研究(30972376),国家自然科学基金,31万,2010.1-2012.12,主持
4、植物次生物质对杨小舟蛾谷胱甘肽S-转移酶的诱导表达(30600476)国家自然科学基金,20万,2007.1-2009.12,主持
5、杨小舟蛾嗅觉受体Mtro/orco的功能研究(SBK2015020410),江苏省自然科学基金,10万,2015.7-2018.6,主持
6、与单宁代谢相关的杨小舟蛾GST基因及其功能验证(2014T70531),中国博士后特别资助,15万,2014.7-2015.12,主持
7、H2O2和NO介导的杨树与杨小舟蛾互作应答及其与抗虫关系(2013M530262), 中国博士后基金一等,8万,2013.7-2014.12,主持
8、堤坝白蚁新型生物防治技术研究及应用(2023058),江苏省水利科技项目,40万,2023.9-2025.8,主持
9、粘质沙雷氏菌SM1对黑翅土白蚁梳理行为的诱导及分子机制(20KJA220003),江苏省高等学校自然科学研究重大项目,15万,2020.10-2023.9,主持
10、黑翅土白蚁和黑胸散白蚁对药剂敏感性的差异及其机理,南京林业大学高学历人才基金,2万,2007.1-2009.12,主持
发表论文
1. Feng K, Jiang DB, Luo J, Tang F. 2023. OfGNBP silencing enhances the toxicity of Serratia marcescens Bizio (SM1) to Odontotermes formosanus (Shiraki). Pesticide Biochemistry and Physiology, 189, 105306. https://doi.org/10.1016/j.pestbp. 2022.105306.
2. Feng K, Li W, Tang XY, Luo J, Tang F*. 2022. Termicin silencing enhances the toxicity of Serratia marcescens Bizio (SM1) to Odontotermes formosanus (Shiraki). Pesticide Biochemistry and Physiology, 185, 105120. https://doi.org/10.1016/j.pestbp. 2022.105120.
3. Feng K, Luo J, Ding X, Tang F*. 2021. Transcriptome analysis and response of three important detoxifying enzymes to Serratia marcescens Bizio (SM1) in Hyphantria cunea (Drury) (Lepidoptera: Noctuidae). Pesticide Biochemistry and Physiology, 178, 104922. https://doi.org/10.1016/j.pestbp.2021.104922.
4. Wang ZQ#, Shi XL#, Zhou YJY, Tang F, Gao XW, Liang P. 2023. Cap ‘n’ collar C and aryl hydrocarbon receptor nuclear translocator facilitate the expression of glutathione S-transferases conferring adaptation to tannic acid and quercetin in Micromelalopha troglodyta (Graeser)(Lepidoptera: Notodontidae). International Journal of Molecular Sciences, 24(3): 2190. https://doi.org/10.3390/ijms24032190.
5. Wang ZQ#, Luo J#, Feng K, Zhou YJY, Tang F. 2022. Prophenoloxidase of Odontotermes formosanus (Shiraki) (Blattodea: Termitidae) is a key gene in melanization and has a defensive role during bacterial Infection. International Journal of Molecular Sciences, 24(1):406. https://doi.org/10.3390/ijms24010406.
6.Li M, Feng XC, Reid WR, Tang F, Liu NN. 2023. Multiple-P450 gene co-up-regulation in the development of permethrin resistance in the house fly, Musca domestica. International Journal of Molecular Sciences, 24,3170. https://doi.org/10.3390/ijms24043170.
7.Wang ZQ, Tang F*, Xu M , Shen TF. 2023.Exploring miRNA-mRNA regulatory modules responding to tannic acid stress in Micromelalopha troglodyta (Graeser) (Lepidoptera: Notodontidae) via small RNA sequencing. Bulletin of Entomological Research. 113(1): 86–97. https://doi.org/10.1017/S0007485322000359
8.Zhang L, Tang XY, Wang ZQ, Tang F*. 2023.The transcriptomic response of Hyphantria cunea (Drury) to the infection of Serratia marcescens Bizio based on full-length SMRT transcriptome sequencing. Frontiers in Cellular and Infection Microbiology. 13:1093432. https://doi.org/10.3389/fcimb.2023.1093432.
9. Tang F*, Tu HZ , Shang QL, Gao XW, Liang P. 2020. Molecular cloning and characterization of five glutathione S-transferase genes and promoters from Micromelalopha troglodyta (Graeser)(Lepidoptera: Notodontidae) and their response to tannic acid stress. Insects.11(6):339. https://doi:10.3390/insects11060339
10. Wang ZQ, Feng K, Tang F*, Xu M. 2021.Activation of the host immune response in Hyphantria cunea(Drury)(Lepidoptera: Noctuidae) induced by Serratia marcescens Bizio. Insects, 12(11):983. https://doi.org/10.3390/insects12110983
11. Jiang DB, Lu XY, Zhang L, Tang F. 2023. Enhancement of pathogen toxicity by feeding Reticulitermes chinensis Snyder sonicated bacteria expressing double-stranded RNA that interferes with olfaction. Insects, 14(2):140. https://doi.org/10.3390/insects14020140.
12. Luo J#, Wang ZQ#, Tang F*, Feng K. 2022. Immune defense mechanism of Reticulitermes chinensis Snyder (Blattodea: Isoptera) against Serratia marcescens Bizio. Insects, 13(3): 226. https://doi.org/10.3390/insects13030226.
13.Feng K, Lu XY ,Luo J, Tang F*.2020. SMRT sequencing of the full-length transcriptome of Odontotermes formosanus (Shiraki) under Serratia marcescens treatment.Scientific Reports.10(1):15909. https://doi.org/10.1038/ s41598-020-73075-3.
14 Fu RJ , Zhou LX, Feng K , Lu XY, Luo J and Tang F* . 2021. Effects of Serratia marcescens (SM1) and its interaction with common biocontrol agents on the termite, Odontotermes formosanus (Shiraki).Journal of Forestry Research. 32(3):1263-1267. http://doi.org/10.1007/s11676-020-01122-w.
15 Fu RJ , Luo J, Feng K, Lu XY , Tang F*. 2021.Termite-killing components in Serratia marcescens (SM1). Journal of Forestry Research. 32(4):1739-1744. http://doi.org/10.1007/s11676-020-01172-0.
16 Lu XY, Nong ML, Feng K, Xu M, Tang F*. 2021. Response of three kinds of detoxifying enzymes from Odontotermes formosanus (Shiraki) to the stress caused by Serratia marcescens Bizio (SM1). Sociobiology, 68(2):e5945. http://doi.org/10.13102/sociobiology.v68i2.5945.
17 Feng K, Tang F*, Zhang Y and Nong ML. 2021. Transcriptome profiling of Micromelalopha troglodyta (Lepidoptera: Notodontidae) larvae under tannin stress using solexa sequencing. Journal of Entomological Science. 56(3): 321-342. https://doi.org/10.18474/JES20-48.
18. Tu HZ, Tang F* and Yang HJ. 2021. Response of acetylcholinesterase to insecticides in Reticulitermes chinensis Snyder (Isoptera: Rhinotermitidae).Journal of Entomological Science. 56(3): 343-348. https://doi.org/10.18474/JES20-63
19.Tang F*, Fu YY and Ye JR. 2015. The effect of methyl salicylate on the induction of direct and indirect plant defense mechanisms in poplar (Populus × euramericana‘Nanlin 895’). Journal of Plant interactions,10(1):93-100.
20. Tang F*, Zhang XB, Liu YS, Gao XW and Liu NN. 2014.In vitro inhibition of glutathione S-transferases by several insecticides and allelochemicals in two moth species. International Journal of Pest Management, 60(1):33-38.
科研奖励
1、梁希林业科学技术自然科学二等奖:森林重要食叶害虫暴发致灾机制及绿色防控分子基础. 排名第三,2023年
2、江苏省科学技术二等奖:长江中下游杨树食叶害虫暴发机制研究及可持续防控技术示范. 排名第五,2017年
3、梁希林业科学技术奖三等奖:长江中下游地区杨树主要食叶害虫暴发机制研究及可持续防控技术示范,排名第五, 2015年
4、霍英东教育基金会第十二届高等院校青年教师三等奖,排名第一,2010年
5、第五届梁希青年论文奖三等奖,排名第一, 2014年
6、第四届梁希青年论文奖,排名第一,2012年
7、第三届梁希青年论文奖, 排名第一,2010年
8、南京林业大学院士基金学术进步二等奖,排名第一,2009年