李芙蓉

副教授 / 硕士生导师

所属平台:生物多样性

研究领域:主要从事第四纪古生态,尤其对第四纪以来土地覆被定量重建研究感兴趣。研究工作的突出特点是将现代生态学、古生态学和古气候学的理论与方法深度融合。系统地开展生态环境现代过程、生态系统历史重建、以及生态系统对气候变化和人类活动的响应规律和机制研究。

联系邮箱: lifr5@mail.sysu.edu.cn

个人主页: https://www.researchgate.net/profile/Furong-Li-6?ev=hdr_xprf

基本信息

性别:女  

职称:“百人计划” 副教授

导师类型:硕士生导师

学历:博士

电子邮箱:lifr5@mail.sysu.edu.cn

主页: https://www.researchgate.net/profile/Furong_Li3

研究方向与兴趣

研究兴趣与方法

“古生态与气候变化” Past Ecology And Climate changE(PEACE)课题组重点关注生态系统对过去长尺度气候变化、自然干扰及人类土地利用变化的动态响应;研究结合多种技术手段,包括遥感、生态系统重建算法、生态系统模型模拟,系统研究不同空间尺度生态系统现代过程、生态系统历史重建、以及生态系统对气候变化和人类活动的响应规律和机制。

主要研究方向

  1. 全球变化背景下的生物多样性格局:(1)花粉多样性与植物多样性定量关系;(2)基于花粉的第四纪植物多样性重建。
  2. 生态系统动态模型模拟:基于LPJ-GUESS 等动态植被模型研究生态系统对气候变化的响应机制及规律。
  3. 末次冰期以来土地覆被变化规律及其驱动机制:(1)花粉产量计算;(2)基于化石花粉和景观重建模型定量重建末次冰期以来土地覆被变化重建;(3)结合动态植被模拟、人口、土地利用模拟等模型分析生态系统对气候变化和人类活动的响应规律及机制。

    课题组常年招收博士后、研究生和本科生,欢迎有志之士加入这个温暖互助、开放包容的科研团队。

教育经历

2012.11–2016.12 林奈大学生物与环境科学学院,古生态学博士

2009. 9 –2012. 6  兰州大学资源环境学院,自然地理学硕士 

2005. 9 –2009. 6  兰州大学生命科学学院,生态学学士

工作经历

2020.8–                 中山大学,生态学院,副教授

2019.1–2020.6      林奈大学,生物与环境科学学院,研究员

2017.1–2018.12    林奈大学,生物与环境科学学院,博士后

获奖情况

2014 瑞典隆德大学科研访学奖学金

2013 瑞典林奈大学科研访学奖学金

2012–2016 国家留学基金委公派留学奖学金

发表论文

*为通讯作者

  1. S., Xie, K. Li, J. Yu, M. J. Bunting  and F. Li *(2026).Relative pollen productivity estimates for major taxa in patches of forest and wetland landscapes in the Altay Mountains. Vegetation History and Archaeobotany (in press).(IF=2.600)
  2. S., Xie, K. Li, F. Li*, X. Yang and T. Reitalu (2024).Modern pollenplant diversity relationships for reliable pollenbased reconstruction of past plant taxonomic and functional diversity: A case study in southwest Shandong, China. Ecological Indicators 167: 112739. (IF= 7.400)
  3. Fu, Q., Y. Qiu, J. Zhao, J. Li, S. Xie, Q. Liao, X. Fu, Y. Huang, Z. Yao, Z. Dai, Y. Qiu, Y. Yang, F. Li* and H. Chen*(2024). Monotonic trends of soil microbiomes, metagenomic and metabolomic functioning across ecosystems along water gradients in the Altai region, northwestern China. Science of The Total Environment 912: 169351. (IF= 8.700)
  4. Li, F.*, Gaillard, M.J., Cao, X., Herzschuh, U., Sugita, S., Ni, J., Zhao, Y., An, C., Huang, X., Li, Y., Liu, H., Sun, A., and Yao, Y. (2023). Gridded pollen-based Holocene regional plant cover in temperate and northern subtropical China suitable for climate modelling, Earth System Science Data, 15, 95-112, 10.5194/essd-15-95-2023.(IF=11.815)
  5. Li, F.*, Gaillard, M.J., Xie S., Huang, K., Cui, Q., Fyfe, R., Marquer, L., Sugita, S. (2023).Evaluation of relative pollen productivities in temperate China for reliable pollen-based quantitative reconstructions of Holocene plant cover. Frontiers in Plant Science.1240485. (IF= 6.627)
  6. Li, F.*, Gaillard, M.-J., Cao, X., Herzschuh, U., Sugita, S., Tarasov, P. E., Wagner, M., Xu, Q., Ni, J., Wang, W., Zhao, Y., An, C., Beusen, A. H. W., Chen, F., Feng, Z., Goldewijk, C. G. M. K., Huang, X., Li, Y., Li, Y., Liu, H., Sun, A., Yao, Y., Zheng, Z., & Jia, X. (2020). Towards quantification of Holocene anthropogenic land-cover change in temperate China: A review in the light of pollen-based REVEALS reconstructions of regional plant cover. Earth-Science Reviews, 203: 103119. (IF= 12.413)
  7. Li, F.*, Gaillard, M.-J., Xu, Q., Bunting, M. J., Li, Y., Li, J., Mu, H., Lu, J., Zhang, P., Zhang, S., Cui, Q., Zhang, Y., & Shen, W. (2018). A Review of Relative Pollen Productivity Estimates From Temperate China for Pollen-Based Quantitative Reconstruction of Past Plant Cover. Frontiers in Plant Science, 9(1214). (IF= 6.627)
  8. Li, F.*, Cao, X., Herzschuh, U., Jia, X., Sugita, S., Tarasov, P.E., Wagner, M., Xu, Q., Chen, F., Sun, A., and Gaillard, M.-J. (2018). What do pollen-based quantitative reconstructions of plant cover tell us about past anthropogenic deforestation in eastern China? PAGES MAGAZINE. 26:32-33.
  9. Li, F., Gaillard, M.-J.*, Sugita, S., Mazier, F., Xu, Q., Zhou, Z., Zhang, Y., Li, Y., & Laffly, D. (2017). Relative pollen productivity estimates for major plant taxa of cultural landscapes in central eastern China. Vegetation History and Archaeobotany, 26(6): 587-605. (IF= 2.600)
  10. Li, F.*, Zhao, Y., Gaillard, M.-J., Li, H., Sun, J., & Xu, Q. (2017). Modern pollen–climate relationships in north Xinjiang, northwestern China: Implications for pollen-based reconstruction of Holocene climate. The Holocene, 27(7): 951-966. (IF= 2.769)
  11. Li, F., 2016. Pollen productivity estimates and pollen-based reconstructions of Holocene vegetation cover in temperate China for climate modelling. Doctoral dissertation, Department of Environmental Science, Linnaeus University, Kalmar, (2016). ISBN: 978-91-88357-52-6. Linnaeus University Press,Växjö.
  12. Li, F., Zhao, Y.*, Sun, J., Zhao, W., Guo, X., Zhang, K. (2011). Surface pollen and its relationship to vegetation in the Zoige Basin, eastern Tibetan Plateau. Frontiers of Earth Science 5(3): 252-261. (IF= 2.273)
  13. Li, F., Sun, J., Zhao, Y.*, Guo, X., Zhao, W., Zhang, K. (2010). Ecological significance of common pollen ratios: A review. Frontiers of Earth Science 4(3):253-258. (IF= 2.273)
  14. Hopcroft, P. O., B. Pirzamanbin, K. Klein Goldewijk, J. Lindström, A. Dawson, J. O. Kaplan, F. Li and M.-J. Gaillard (2026). Biogeophysical Impact of Land-Use Scenarios on Holocene Surface Temperatures. Geophysical Research Letters53(4): e2025GL118518.
  15. Ren, X., L. Marquer, F. Li, Y. Sun, M. Zheng, L. Xiang, J. Zhang, H. Wang, D. Luo, C. Huang, W. Wang, G. Ding and X. Huang (2026). Testing the REVEALS model in monsoon–steppe landscapes: pollen-based quantitative land-cover reconstruction from lakes in northern China. Quaternary Science Reviews388: 110102.
  16. Navya, R., S. Prasad, M. J. Gaillard, F. Mazier, F. Li and K. Anupama (2026). Relative pollen productivity estimates from India: A step towards quantitative reconstruction of past plant abundance. Ecosphere17(2): e70533.
  17. Geng, R., Andreev, A., Kruse, S., Heim, B., van Geffen, F., Pestryakova, L., Zakharov, E., Troeva, E., Shevtsova, I., Li, F., Zhao, Y., and Herzschuh, U. (2022). Modern Pollen Assemblages From Lake Sediments and Soil in East Siberia and Relative Pollen Productivity Estimates for Major Taxa, 10, 10.3389/fevo.2022.837857, .
  18. Gaillard, M.-J., Githumbi, E., Achoundong, G., Lézine, A.-M., Hély, C., Lebamba, J., Marquer, L., Mazier, F., Li, F., and Sugita, S.: The challenge of pollen-based quantitative reconstruction of Holocene plant cover in tropical regions: A pilot study in Cameroon, in: Quaternary Vegetation Dynamics – The African Pollen Database, 183-206, 10.1201/9781003162766-12, 2021.
  19. Wan, Q., Zhang, Y., Huang, K., Sun, Q., Zhang, X., Gaillard, M.-J., Xu, Q., Li, F., & Zheng, Z.* (2020). Evaluating quantitative pollen representation of vegetation in the tropics: A case study on the Hainan Island, tropical China. Ecological Indicators, 114: 106297. (IF= 6.263)
  20. Jiang, F., Xu, Q., Zhang, S., Li, F., Zhang, K., Wang, M., Shen, W., Sun, Y., Zhou, Z.* (2020). Relative pollen productivities of the major plant taxa of subtropical evergreen and deciduous broad-leaved woodland in China and their application in pollen-based reconstruction of Holocene plant-cover. Journal of Quaternary Science. ISSN 0267-8179. DOI: 10.1002/jqs.3197. (IF= 2.769)
  21. Cao, X.*, Tian, F., Li, F., Gaillard, M.-J., Rudaya, N., Xu, Q., and Herzschuh, U., (2019). Pollen-based quantitative land-cover reconstruction for northern Asia during the last 40 ka. Climate of Past, 15: 1503–1536. (IF= 4.498)
  22. Dawson, A.*, Cao, X., Chaput, M., Hopla, E., Li, F. et al., (2018). What is the magnitude of human induced Northern Hemisphere land-cover transformation between 6 and 0.2 ka BP? PAGES MAGAZINE. 26:34-35.
  23. Gaillard, M-J, Gonzales, P., Harrison, S., Klein Goldewijk, K., Li, F. & Madella, M. (2017).Towards global land-cover and land-use reconstructions over the Holocene. PAGES MAGAZINE.25(2): 121.
  24. Xu, Q.*, Zhang, S., Gaillard, M.-J., Li, M., Cao, X., Tian, F., & Li, F. (2016). Studies of modern pollen assemblages for pollen dispersal- deposition- preservation process understanding and for pollen-based reconstructions of past vegetation, climate, and human impact: A review based on case studies in China. Quaternary Science Reviews 149: 151-166. (IF= 4.456)
  25. Zhao, Y.*, Yu, Z., Tang, Y., Li, H., Yang, B., Li, F., Zhao, W., Sun, J., Chen, J., Li, Q., & Zhou, A.F. (2014). Peatland initiation and carbon accumulation in China over the last 50,000 years. Earth-Science Reviews 128: 139-146. (IF= 12.413)
  26. Zhao, Y.*, Tang, Y., Yu, Z., Li, H., Yang, B., Zhao, W., Li, F., & Li, Q. (2014). Holocene peatland initiation, lateral expansion, and carbon dynamics in the Zoige Basin of the eastern Tibetan Plateau. The Holocene 24: 1137-1145. (IF= 2.769)
  27. Zhao, Y.*, Li, F., Hou, Y., Sun, J., Zhao, W., Tang, Y., Li, H. (2012). Surface pollen and its relationships with modern vegetation and climate on the Loess Plateau and surrounding deserts in China. Review of Palaeobotany and Palynology 181:47–53. (IF= 1.940)
  28. Zhao, Y.*, Liu, H., Li, F., Huang, X., Sun, J., Zhao, W., Herzschuh, U., Tang, Y. (2012). Application and limitations of the Artemisia/Chenopodiaceae pollen ratio in arid and semi-arid China. The Holocene 22(12):1385-1392. (IF= 2.769)
  29. Sun, J.*, Li, F., Zhao, W., Tang, Y. (2011). A review of the studies on modern process for climatic proxies in north-western China. Frontiers of Earth Science 5(3):262-270. (IF= 2.273)
  30. Yao, L., Zhao, Y.*, Gao, S., Sun, J., Li, F. (2011). The peatland area change in past 20 years in the Zoige Basin, eastern Tibetan Plateau. Frontiers of Earth Science 5(3):271-275. (IF= 2.273)

其他科研服务

联合国过去全球变化研究PAGES LandCover 6k 工作组负责人之一

Journal of Plant Ecology 青年编委

Journal of Land 编委

Quaternary Science Review, Earth System Science Data, Holocene, Vegetation History and Archaeobotany, Review of Palaeobotany and Palynology 等杂志审稿人

主持科研项目

广东省科学技术厅,南岭山地生态系统与生物多样性科学考察 ,2025B1212060003,2025/07-2027/06,30万/100万,在研,子课题负责人;
国家自然科学基金青年项目,北疆荒漠-草原-针叶林过渡带花粉产量计算及全新世土地覆被重建, 42101143, 2022/01-2024/12,  30万,主持;
中山大学百人计划项目,2021/01--2023/12, 60万,主持;

参与主要科研项目

瑞典科学基金(Swedish Research Council—Vetenskapsrådet)项目:MERGE - ModElling the Regional and Global Earth system (2012–2022),参加

国家自然科学基金项目:青藏高原东部全新世气候变化及植被和泥炭地的响应(2010-2013),参加,项目负责人:赵艳

国家自然科学基金项目:青藏高原和中东亚干旱区环境变化与地表过程研究(2010-2013),参加,项目负责人:陈发虎