姓  名: 郭 偉
學  科: 生態基因組學
電話/傳真: +86-10-64807217 / guowei@ioz.ac.cn
電子郵件: guowei@ioz.ac.cn
通訊地址: 北京市朝陽區北辰西路1號院5號
必威精装版app西汉姆联 農業蟲害鼠害綜合治理研究國家重點實驗室 100101
更多信息: 生態基因組學及適應性研究組     

簡曆介紹:

  2010-2012 必威精装版app西汉姆联 助理研究員

  2013-2023 必威精装版app西汉姆联 副研究員

  2023-今   必威精装版app西汉姆联 研究員

  2016-2017 美國伊利諾伊大學香檳分校 訪問學者

研究領域:

  研究方向為昆蟲基因組學。主要利用基因組學手段,研究飛蝗兩型轉變的行為適應、分子調控機理以及生殖調控的機製。

社會任職:

獲獎及榮譽:

  2022 農業部 神農青年英才獎

  2017 國務院 國家自然科學獎二等獎(排名第四)

承擔科研項目情況:

  2022-2025 國家重點研發計劃(子課題) 重大蝗蟲成災機製與可持續防控技術研究

  2020-2023 中國科學院國際合作局海外科教合作中心部署項目 非洲地區沙漠蝗爆發成災的機製

  2020-2022 中國科學院重點部署項目(課題) 草地貪夜蛾基因組學及快速適應的進化機製

  2020-2023 國家自然科學基金麵上項目 特化脂肪體調控飛蝗精子發生的分子機製

  2016-2019 國家自然科學基金麵上項目 飛蝗卵子發生期保幼激素調控細胞多倍化的分子機製

代表論著:

  1. Du B, Ding D, Ma C, Guo W*, Kang L *: Locust density shapes energy metabolism and oxidative stress resulting in divergence of flight traits. Proceedings of the National Academy of Sciences of the United States of America 2022, 119: e2115753118.
  2. Gui F#, Lan T#, Zhao Y#, Guo W#, Dong Y, Fang D et al: Genomic and transcriptomic analysis unveils population evolution and development of pesticide resistance in fall armyworm Spodoptera frugiperda. Protein & Cell 2022, 13:513-531.
  3. Hao S, Liu C, Ma C, Guo W*, Kang L*: Embryonic development of grasshopper populations along latitudinal gradients reveal differential thermoaccumulation for adaptation to climate warming. Frontiers in Ecology and Evolution 2021, 9: 736456.
  4. Yang P, Wang D, Guo W, Kang L*: FAWMine: An integrated database and analysis platform forfall armyworm genomics. Insect Science 2021, 28: 590–601
  5. Zhao L#, Guo W#, Jiang F, He J, Liu H, S ong J, Yu D, Kang L*: Phase-related differences in egg production of the migratory locust regulated by differential oosorption through microRNA-34 targeting activinβ. PLoS Genetics 2021, 17: e1009174.
  6. Guo W#, Song J#, Yang P, Chen X, Chen D, Ren D, Kang L*, Wang X*: Juvenile hormone suppresses aggregation behavior through influencing antennal gene expression in locusts. PLoS Genetics 2020, 16:e1008762.
  7. Ren D#, Song J#, Ni M, Kang L*, Guo W*: Regulatory mechanisms of cell polyploidy in insects. Frontiers in Cell and Developmental Biology 2020, 8:361.
  8. Ren D#, Guo W#, Yang P#, Song J, He J, Zhao L, Kang L*: Structural and functional differentiation of a fat body-like tissue adhering to testis follicles facilitates spermatogenesis in locusts. Insect Biochemistry and Molecular Biology 2019, 113:103207.
  9. Guo W#, Wu Z#, Yang L, Cai Z, Zhao L, Zhou S*: Juvenile hormone-dependent Kazal-type serine protease inhibitor Greglin safeguards insect vitellogenesis and egg production. FASEB Journal 2019, 33:917-927.
  10. Wu Z#, Guo W#, Yang L, He Q, Zhou S*: Juvenile hormone promotes locust fat body cell polyploidization and vitellogenesis by activating the transcription of Cdk6 and E2f1. Insect Biochemistry and Molecular Biology 2018, 102:1-10.
  11. Guo W, Ren D, Zhao L, Jiang F, Song J, Wang X, Kang L*: Identification of odorant-binding proteins (OBPs) and functional analysis of phase-related OBPs in the migratory locust. Frontiers in Physiology 2018, 9:984.
  12. Wu Z, Guo W, Xie Y, Zhou S*: Juvenile hormone activates the transcription of cell-division-cycle 6 (cdc6) for polyploidy-dependent insect vitellogenesis and oogenesis. Journal of Biological Chemistry 2016, 291:5418-5427.
  13. Guo W#, Wu Z#, Song J, Jiang F, Wang Z, Deng S, W. VK, Zhou S*: Juvenile hormone-receptor complex acts on mcm4 and mcm7 to promote polyploidy and vitellogenesis in the migratory locust. PLoS Genetics 2014, 10:e1004702.
  14. Song J, Guo W, Jiang F, Kang L, Zhou S*: Argonaute 1 is indispensable for juvenile hormone mediated oogenesis in the migratory locust, Locusta migratoria. Insect Biochemistry and Molecular Biology 2013, 43:879-887.
  15. Ma Z, Guo W, Guo X, Wang X, Kang L*: Modulation of behavioral phase changes of the migratory locust by the catecholamine metabolic pathway. Proceedings of the National Academy of Sciences of the United States of America 2011, 108:3882-3887.
  16. Guo W#, Wang X#, Ma Z, Xue L, Han J, Yu D, Kang L*: CSP and takeout genes modulate the switch between attraction and repulsion during behavioral phase change in the migratory locust. PLoS Genetics 2011, 7:e1001291.
  17. Guo W#, Wang X#, Zhao D, Yang P, Kang L*: Molecular cloning and temporal-spatial expression of I element in gregarious and solitary locusts. Journal of Insect Physiology 2010, 56:943-948.
  18. 《昆蟲生殖調控及適應的生態基因組學》,郭偉 任妲妮。《生態基因組學》康樂 主編,2019年,科學出版社。

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