人才详细信息

简介
教育经历
2011.09-2015.06 成都理工大学地理信息系统专业
2015.09-2018.06 成都理工大学地图学与地理信息系统专业
2018.09-2022.06 中国科学院地理科学与资源研究所生态学专业
工作经历
2022.09-2026.07 中国科学院青藏高原研究所地理学 博士后
2023.11-2024.11 西藏生态环境厅援藏
2026.07-至今 中国科学院青藏高原研究所 副研究员
主要学术成就
主要从事生态系统多功能变化及植被恢复研究,揭示了全球生态系统多功能性,植物繁殖投入与成功对气候变化的响应;明晰了高寒草地生态系统关键功能过程对资源梯度的响应机制;阐明了退化高寒草地生态系统植物功能群的生态适应策略等。基于以上成果,以第一或通讯作者发表SCI 10余篇,包括Nature Communications(2篇), Earth-Science Reviews, Global Ecology and Biogeography, Catena等期刊。担任Journal of Plant Ecology青年编委,主持国家自然科学基金青年项目(C类)、中国科学院特别研究助理资助项目等;西藏高层次援藏人才。
研究方向
职务
社会任职
承担项目
获奖及荣誉
2016-2017 硕士研究生国家奖学金
2017-2018 硕士研究生国家奖学金
2018-2019 四川省优秀毕业研究生
2018-2019 博士研究生国家奖学金
2018-2019 中国科学院地理所优秀共青团员
2018-2019 中国科学院院长优秀奖学金
2019-2020 朱李月华奖学金
2020-2021 博士研究生国家奖学金
2022-2023 中国科学院青藏高原研究所“优秀个人奖”
2024-2025 中国科学院青藏高原研究所“优秀个人奖”
代表论著
(1) Zhou T.C, Sun J*, Ye C.C, Jing X, Liang E.Y, Lu X.Y, Mori Akira S., Meadows Michael E., Peñuelas Josep, 2025. Climate change is predicted to reduce global belowground ecosystem multifunctionality. Nature Communications, 16(1): 9337.
(2) Sun J*, Zhou T.C, Liu M, Peter B. Reich*, He Y.C, Wan L.F, Wu J.H, Michael E. Meadows, Liang E.Y, Tien Ming Lee, Isabel C. Barrio, Deng T, Zhang S, Xu X.L, Josep Peñuelas, 2026. Warming over 2 ℃ reduces plant sexual reproductive success potential in water-limited regions. Nature Communications (共同一作,Accepted).
(3) Zhou, T.C., Sun, J. and Shi, P.L., 2021. Plant-microbe interactions regulate the aboveground community nitrogen accumulation rate in different environmental conditions on the Tibetan Plateau. Catena, 204.
(4) Zhou, T.C., Liu, M., Sun, J., Li, Y., Shi, P., Tsunekawa, A., Zhou, H., Yi, S. and Xue, X., 2020. The patterns and mechanisms of precipitation use efficiency in alpine grasslands on the Tibetan Plateau. Agriculture Ecosystems & Environment, 292.
(5) Zhou, T.C., Sun, J. and Shi, P.L., 2024. Mechanism of plant-soil feedback in a degraded alpine grassland on the Tibetan Plateau. Journal of Plant Ecology, 17(2).
(6) Zhou Tiancai, Gusang Qunzong*, Sun Jian*. 2026. Leaf nitrogen and phosphorus are more coupled in legumes than in non-legumes, globally. Journal of Plant Ecology, 19(2): rtaf176.
(7) Zhou, Tiancai, Sun, Jian, Liu, Miao, Shi, Pei-Li, Zhang, Xu-Bo, Sun, Wei, Yang, Gang, Tsunekawa, Atsushi. Coupling between plant nitrogen and phosphorus along water and heat gradients in alpine grassland. Science of The Total Environment, 2020, 701.2019.134660.
(8) Zhou, Tiancai, Hou, Ge, Sun, Jian, Zong, Ning, & Shi, Peili. Degradation shifts plant communities from S- to R-strategy in an alpine meadow, Tibetan Plateau. Science of The Total Environment, 2021, 800.
(9) Sun, J., Zhou, T.C., Liu, M., Chen, Y.C., Liu, G.-H., Xu, M., Shi, P.-L., Peng, F., Tsunekawa, A., Liu, Y., Wang, X.D., Dong, S.K., Zhang, Y.J. and Li, Y.N., 2020. Water and heat availability are drivers of the aboveground plant carbon accumulation rate in alpine grasslands on the Tibetan Plateau. Global Ecology and Biogeography, 29(1): 50-64. (共同一作)
(10) Sun, Jian, Zhou, Tiancai, Liu, Miao, Chen, Youchao, Shang, Hua, Zhu, Liping, Shedayi, Arshad Ali, Yu, Huan, Cheng, Genwei, Liu, Guohua, Xu, Ming, Deng, Wei, Fan, Jihui, Lu, Xuyang, Sha, Yukun. Linkages of the dynamics of glaciers and lakes with the climate elements over the Tibetan Plateau, Earth-Science Reviews, 2018, 2018(185): 308-324. (共同一作)