• 姓名: 高艳菊
  • 性别: 女
  • 职称: 副研究员
  • 职务: 
  • 学历: 博士研究生
  • 电话: 0991-7885511
  • 传真: 
  • 电子邮件: gaoyj@ms.xjb.ac.cn
  • 所属部门: 
  • 通讯地址: 新疆乌鲁木齐市北京南路818号

    简  历:

  • 教育经历:

    2011年9月—2015年7月,石河子大学,农业资源与环境专业,学士

    2015年9月—2018年7月,石河子大学,植物营养学专业,硕士

    2020年9月—2023年7月,中国科学院新疆生态与地理研究所,植物学专业,博士

    工作经历:

    2023年7月至今,中国科学院新疆生态与地理研究所,生态学博士后

    2025年12月至今,中国科学院新疆生态与地理研究所,副研究员 

    社会任职:

    研究方向:

  • 干旱区植物-土壤养分循环过程

    承担科研项目情况:

  • 1. 国家自然科学基金面上项目,2026.1-2029.12,63万,主持

    2. 国家资助博士后项目C档,2024.1-2025.12,24万,主持

    3. 中国博士后第18批特别资助项目,2025.1-2026.12,18万,主持

    4. 中国博士后2025年度科研业绩考核一等资助项目,2025.1-2026.12,10万,主持

    5. 中国科学院特别研究助理项目,2024.1-2025.12,80万,主持

    6. 新疆维吾尔自治区天池英才“青年博士人才”项目,2024.1-2025.12,60万,主持

    7. 新疆维吾尔自治区自然科学基金面上项目,2025.1-2028.12,10万,主持

    8. 新疆维吾尔自治区优秀博士后特别资助项目,2025.1-2026.12,8万,主持 

    代表论著:

  • [1] Gao, Y., Tariq, A., Zeng, F., Sardans, J., Al-Bakre, D.A., Peñuelas, J. Long-term anthropogenic disturbances exacerbate soil organic carbon loss in hyperarid desert ecosystems[J]. Global Change Biology, 2025, 31, e70423. 

    [2] Tariq, A*., Gao, Y*., Zeng, F., Sardans, J., Ahmed, Z., Graciano, C., Hughes, A., Peñuelas, J. Guardians of arid lands: deep-rooted defense against desertification and climate change[J]. Trends in Plant Science, 2025.

    [3] Gao, Y., Tariq, A., Zeng, F., Sardans, J., Al-Bakre, D.A., Peñuelas, J. Seasonal dynamics and allocation patterns of foliar phosphorus fractions in deep-rooted desert species under phosphorus-poor environments[J]. Journal of Plant Ecology, 2025. 

    [4] Gao, Y., Tariq, A., Zeng, F., Li, X.Y., Sardans, J., Al-Bakre, D.A., Peñuelas, J. Metagenomics reveals divergent functional profiles of soil carbon and nitrogen cycles in an experimental drought and phosphorus-poor desert ecosystem[J]. Applied Soil Ecology, 2025, 207, 105946. 

    [5] Gao, Y., Tariq, A., Zeng, F., Sardans, J., Al-Bakre, D. A., & Peñuelas, J. Drying and rewetting affect the chemical speciation and bioavailability of soil phosphorus in a hyper-arid desert ecosystem[J]. Pedosphere, 2025, 35(5), 796-808. 

    [6] Zhang, J., Ma, X., Gao, Y#., Dong, X., Tariq, A., Sardans, J., Peñuelas, J., Zeng, F#. (2025). Salinity enhances soil organic carbon stability in hyper-arid deserts via increased mineral-association carbon and microbial carbon use efficiency [J]. Land Degradation & Development,0:1-16.

    [7] Gao, Y., Tariq, A., Zeng, F., Sardans, J., Al-Bakre, D.A., Peñuelas, J. Fractions of soil phosphorus mediated by rhizospheric phoD-harbouring bacteria of deep-rooted desert species are determined by fine-root traits[J]. Functional Ecology, 2024, 38(10), 2300–2315. 

    [8] Gao Y., Tariq, A., Zeng F., Li X., Sardans, J., Penuelas, J. Fine‐root traits are devoted to the allocation of foliar phosphorus fractions of desert species under water and phosphorus‐poor environments[J]. Physiologia Plantarum, 2023, 175(6), e14105. 

    [9] Gao, Y., Tariq, A., Zeng, F., Graciano, C., Zhang, Z., Sardans, J., Penuelas, J. Allocation of foliar-P fractions of Alhagi sparsifolia and its relationship with soil-P fractions and soil properties in a hyperarid desert ecosystem[J]. Geoderma, 2022, 407(4)115546.

    [10] Gao, Y., Tariq, A., Zeng, F., Sardans, J., Penuelas, J., Zhang, Z., Islam, W., Xu, M. “Fertile islands” beneath three desert vegetation on soil phosphorus fractions, enzymatic activities, and microbial biomass in the desert-oasis transition zone[J]. Catena, 2022, 212 (5): 106090.

    专利申请:

    获奖及荣誉:

  • 2023年,中国科学院地奥奖学金

    2022年,博士国家奖学金

    2017年,硕士国家奖学金