基本信息

潘应骥  研究员 博士生导师 湿地植物生态学科组组长

中国科学院湿地生态与环境重点实验室

中国科学院东北地理与农业生态研究所

课题组简介:湿地植物生态学科组

个人主页:www.iga.ac.cn/panyingji

邮箱:panyingji@iga.ac.cn

通讯地址: 吉林省长春市盛北大街4888号

研究领域

湿地生态学;湿地植物生态;植物功能性状;湿地生态系统功能与恢复;生态建模

招生信息

欢迎有志于湿地生态学、植物功能性状、理论生态学等领域,对以下研究方向感兴趣的同仁加盟!

(1) 湿地植物对典型东北湿地生态系统及全球变化的生态适应性和调节反馈机制

(2) 湿地植物群落的形成和维持机制,特别是植物功能性状对退化湿地植被群落恢复和演替过程中的驱动和指示作用

(3) 湿地植物对关键湿地生态系统过程和功能(包括甲烷排放、反硝化作用等)的作用路径和影响机理

(4) 湿地植物生态建模与大数据分析



招生专业
071300-生态学
招生方向
湿地生态学;功能生态学;全球变化生态学;理论生态学

教育背景

2016-09--2020-09   荷兰莱顿大学   理学博士(生态学专业)
2013-09--2016-07   华东师范大学   理学硕士(生态学专业)
2009-09--2013-07   华东师范大学   理学学士(生态学专业)

工作经历

2022.12--至今       中国科学院东北地理与农业生态研究所,研究员
2021.11--2022.11  四川大学,生命科学学院,副研究员
2020.09--2021.09  荷兰莱顿大学,环境学院,博士后 

学术兼职

1.   荷兰莱顿大学客座研究员(2021.10-2023.08)

2. 《应用生态学报》青年编委(2023-2025)

3. 《Journal of Plant Ecology 》青年编委(2023-2025)

4.   Ecology, Journal of Ecology, Global Ecology & Biogeography, Envrionmental Science & Technology, Freshwater Biology 等国际知名学术期刊审稿人。


代表性成果

(*为通讯作者)

1.        Pan, Y.*, García-Girón, J. & Iversen, L.L.*, 2023. Global change and plant-ecosystem functioning in freshwaters. Trends in Plant Science. (获选为当期封面文章)https://doi.org/10.1016/j.tplants.2022.12.013

2.        Pan, Y.*, Cieraad, E., Armstrong, J., Armstrong, W., Clarkson, B.R., Colmer, T.D., Pedersen, O., Visser, E.J.W., Voesenek, L.A.C.J. & van Bodegom, P.M., 2020. Global patterns of the leaf economics spectrum in wetlands. Nature Communicationshttp://doi.org/10.1038/s41467-020-18354-3

3.        Huang, L., Jin, C., Pan, Y., Zhou, L., Hu, S., Guo, Y., Meng, Y., Song, K., Pang, M., Li, H., Lin, D., Xu, X., Minor, J., Coggins, C., Jim, C. Y., Yan, E., Yang, Y.*, Tang, Z.* & Lindenmayer, D. B.*, 2023. Human activities and species biological traits drive the long-term persistence of old trees in human-dominated landscapes. Nature Plants. https://doi.org/10.1038/s41477-023-01412-1

4.        Pan, Y.*, Cieraad, E., Armstrong, J., Armstrong, W., Clarkson, B.R., Pedersen, O., Visser, E.J.W., Voesenek, L.A.C.J. & van Bodegom, P.M., 2022. Leading trait dimensions in flood-tolerant plants. Annals of Botany. http://doi.org/10.1093/aob/mcac031

5.        Pan, Y., 2020. General plant strategies and functions in wetlands: Global trait-based analyses. PhD Thesis, Leiden University. ISBN: 978-90-5101-991-2 https://scholarlypublications.universiteitleiden.nl/handle/1887/136753

6.        Pan, Y.*, Cieraad, E., Clarkson, B.R., Colmer, T.D., Pedersen, O., Visser, E.J.W., Voesenek, L.A.C.J. & van Bodegom, P.M., 2020. Drivers of plant traits that allow survival in wetlands. Functional Ecology. http://doi.org/10.1111/1365-2435.13541

7.        Pan, Y.*, Cieraad, E. & van Bodegom, P.M., 2019. Are ecophysiological adaptive traits decoupled from leaf economics traits in wetlands? Functional Ecology. http://doi.org/10.1111/1365-2435.13329

8.        Iversen L.L.*, García-Girón J. & Pan, Y.*, 2021. Towards linking freshwater plants and ecosystems via functional biogeography. Aquatic Botany. http://doi.org/10.1016/j.aquabot.2021.103454

9.        Pan, Y., Zhang, X., Song, K. & Da, L., 2017. Applying trait-based method to investigate the relationship between macrophyte communities and environmental conditions in a eutrophic freshwater lake, China. Aquatic Botany. http://doi.org/10.1016/j.aquabot.2017.06.002

10.     Gao, Z., Pan, Y., Bodegom, P.M. Van, Cieraad, E., Xing, D., Yang, Y., Xia, T., Luo, X., Song, K., Da, L. & Malkinson, D., 2023. Landscape and Urban Planning Beta diversity of urban spontaneous plants and its drivers in 9 major cities of Yunnan province, China. Landscape and Urban Planning. https://doi:10.1016/j.landurbplan.2023.104741

11.     Xia, X., Pan, Y., Chang, M., Wu, D., Zhang, X., Xia, J., & Song, K, 2022. Consistent temperature-dependent patterns of leaf lifespan across spatial and temporal gradients for deciduous trees in Europe. Science of The Total Environment. https://doi.org/10.1016/j.scitotenv.2022.153175

12.     Gao, Z., Song, K., Pan, Y., Malkinson, D., Zhang, X., Jia, B., Xia, T., Guo, X., Liang, H., Huang, S., Da, L., van Bodegom, P.M. & Cieraad, E., 2021. Drivers of spontaneous plant richness patterns in urban green space within a biodiversity hotspot. Urban Forestry & Urban Greening. http://doi.org/10.1016/j.ufug.2021.127098

13.     Long, Y., Yang, X., Cao, Y., Lv, G., Li, Y., Pan, Y., Yan, K. & Liu, Y., 2021. Relationship between soil fungi and seedling density in the vicinity of adult conspecifics in an arid desert forest. Forests. http://doi.org/10.3390/f12010092

14.     Zhang, X., Song, K., Pan, Y., Gao, Z., Pu, F., Lu, J., Shang, K., Da, L. & Cieraad, E., 2020. Responses of leaf traits to low temperature in an evergreen oak at its upper limit. Ecological Research. http://doi.org/10.1111/1440-1703.12157

15.     Cui, Y., Song, K., Guo, X., van Bodegom, P.M., Pan, Y., Tian, Z., Chen, X., Wang, J. & Da, L., 2019. Phylogenetic and functional structures of plant communities along a spatiotemporal urbanization gradient: effects of colonization and extinction. Journal of Vegetation Science. http://doi.org/10.1111/jvs.12724

16.     Song, K., Cui, Y., Zhang, X., Pan, Y., Xu, J., Xu, K. & Da, L., 2017. Enhanced effects of biotic interactions on predicting multispecies spatial distribution of submerged macrophytes after eutrophication. Ecology and Evolution. http://doi.org/10.1111/jvs.12724

指导学生

现指导学生

杨佳婷  硕士研究生  090101-作物栽培学与耕作学  

李雪楠  硕士研究生  071300-生态学