姓  名: 薑 楓
學  科: 生態互作表觀基因組學
電話/傳真: +86-10-64807217 / +86-10-64807099
電子郵件: jiangf@ioz.ac.cn
通訊地址: 北京市朝陽區北辰西路1號院5號 100101
更多信息: 生態基因組學及適應性研究組     

簡曆介紹:

薑楓,博士,研究員。2013年畢業於必威精装版app西汉姆联 ,獲理學博士學位。2013年起進入中國科學院北京生命科學研究院工作,任助理研究員,2018年起任副研究員,2024年起任研究員。2025年加入必威精装版app西汉姆联 。發表SCI論文40餘篇,其中以第一/通訊(含共同)作者在Nature GeneticsMicrobiomeNature CommunicationsEMBO Journal, EMBO ReportsBMC BiologyPLoS GeneticsRNA BiologyGigaScienceApplied Microbiology and Biotechnology等期刊發表論文17篇。作為項目負責人或者子課題負責人主持國家自然科學基金項目、國家重點研發計劃重點專項、農業農村部項目、科技創新2030項目、新疆維吾爾自治區重點研發專項、中國科學院國際夥伴計劃等項目。現任中國昆蟲學會昆蟲基因組學專業委員會委員和Faculty Opinions (Faculty of 1000) 的Associate Faculty Member。2019年獲得中國昆蟲學會青年科學技術獎。

研究領域:

研究方向為生態互作表觀基因組學。

  1. 闡明表觀調控機製在昆蟲適應環境變化和表型可塑性形成中的關鍵作用,重點聚焦於害蟲個體間的生態互作和真菌與害蟲的寄生互作關係,為精準防控策略的製定提供理論依據。
  2. 綠僵菌微生物農藥的關鍵技術研發,推動其在農業蟲害綠色防控中的規模化應用與產業化落地。

歡迎對表觀遺傳基因組學、生物信息學、比較基因組學方向感興趣同學報考。

社會任職:

獲獎及榮譽:

承擔科研項目情況:

代表論著:

全部論文英文鏈接:https://fengj03.github.io/

* First author; # Corresponding author.

  1. Liu Q*, Jiang, F*, Liu S*, Li R*, Fang W*, Li X, Hu T, Feng L, et al., Kang, L. Chromatin dynamics of large-sized genome provides insights into polyphenism and X0 dosage compensation of locusts. Nature Genetics. 2025, In Press.
  2. Li, X*, Jiang, F*, Liu, Q, Zhang, Z, Fang, W, Wang, Y, Liu, H., Kang, L. GAF-dependent chromatin plasticity determines promoter usage to mediate locust gregarious behavior. EMBO journal. 2025, 44(10), 2928–2948.
  3. Liu Q*, Cui F*, Liu X, Fu Y, Fang W, Kang X, Lu H, Li S, Liu B, Guo W, Xia Q#, Kang L#, Jiang F#. Association of virome dynamics with mosquito species and environmental factors. Microbiome. 2023 May 8;11(1):101.
  4. Wang H*, Jiang F*, Liu X*, Liu Q, Fu Y, Li R, Hou L, Zhang J, He J, Kang L. Piwi/piRNAs control food intake by promoting neuropeptide F expression in locusts. EMBO Rep. 2022:e50851.
  5. Liu Q*, Jiang F*, Zhang J, Li X, Kang L: Transcription initiation of distant core promoters in a large-sized genome of an insect. BMC Biol. 2021, 19:62.
  6. Jiang F*, Zhang J*, Liu Q, Liu X, Wang H, He J, Kang L. Long-read direct RNA sequencing by 5'-Cap capturing reveals the impact of Piwi on the widespread exonization of transposable elements in locusts. RNA Biol. 2019, 16(7): 950-959.
  7. Jiang F*, Liu Q*, Liu X, Wang XH, Kang L. Genomic data reveal high conservation but divergent evolutionary pattern of Polycomb/Trithorax group genes in arthropods. Insect Sci. 2019, 26(1): 20-34.
  8. Jiang F*, Liu Q*, Wang Y, Zhang J, Wang H, Song T, Yang M, Wang X, Kang L. Comparative genomic analysis of SET domain family reveals the origin, expansion, and putative function of the arthropod-specific SmydA genes as histone modifiers in insects. GigaScience. 2017, 6(6):1-16.
  9. Zhu J*, Jiang F*, Wang X, Yang P, Bao Y, Zhao W, Wang W, Lu H, Wang Q, Cui N et al. Genome sequence of the small brown planthopper Laodelphax striatellus. GigaScience. 2017, 6(12):1-12.
  10. Guo S*, Jiang F*, Yang P, Liu Q, Wang X, Kang L. Characteristics and expression patterns of histone-modifying enzyme systems in the migratory locust. Insect Biochem Mol Biol. 2016, 76:18-28.
  11. Yang M*, Wei Y*,Jiang F*, Wang Y, Guo X, He J, Kang L. MicroRNA-133 inhibits behavioral aggregation by controlling dopamine synthesis in locusts. PLoSGenet. 2014, 10(2): e1004206.
  12. Wang X*, Fang X*, Yang P*, Jiang X*, Jiang F*, Zhao D et al. The locust genome provides insight into swarm formation and long-distance flight. Nature Communications. 2014, 5:1-9.
  13. Yuan J, Yang M, Ren J, Fu B, Jiang F#, Zhang X#. Analysis of genomic characters reveals that four distinct gene clusters are correlated with different functions in Burkholderia cenocepacia AU 1054. Applied Microbiology and Biotechnology. 2014, 98(1):361-372.
  14. Song S, Jiang F#, Yuan J, Guo W, Miao Y#. Exceptionally high cumulative percentage of NUMTs originating from linear mitochondrial DNA molecules in the Hydra magnipapillata genome. BMC Genomics. 2013, 14:447.
  15. 薑楓, 王慧敏, 劉晴. 生態適應過程中非編碼RNA的表達調控機製. 康樂, 主編. 生態基因組學. 北京:科學出版社,2019年.

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