(1)2020年获北京市优秀毕业生、中国科学院大学优秀毕业生。
(2)2019年获中国科学院院长优秀奖、朱李月华优秀博士生奖、国家奖学金、丰华奖学金。
1. He P.,Ye Q.,Yu K.,Liu X.,Liu H.,Liang X.,Zhu S.,Wang H.,Yan J.,Wang Y.P., Wright IJ. (2025) Relationship between wind speed and plant hydraulics at the global scale. Nature Ecology & Evolution.
2. He P.,Gleason SM.,Wright IJ.,Weng ES.,Liu H.,Zhu SD.,Lu M.,Luo Q.,Li RH.,Wu GL.,Yan ER.,Song YJ.,Mi XC.,Hao GY.,Reich PB.,Wang YP.,Ellsworth DS.,Ye Q. (2020) Growing-season temperature and precipitation are independent drivers of global variation in xylem hydraulic conductivity. Global Change Biology 26(3):1833–1841.
3. He P.,Wright IJ.,Zhu S.,Onoda Y.,Liu H.,Li R.,Liu X.,Hua L.,Oyanoghafo OO.,Ye Q. (2019) Leaf mechanical strength and photosynthetic capacity vary independently across 57 subtropical forest species with contrasting light requirements. New Phytologist 223(2):607–618.
4. He P.,Ye Q.,Yu K.,Wang H.,Xu H.,Yin Q.,Yue M.,Liang X.,Wang W.,You Z., Zhong Y.,Liu H. (2025) Growing-season precipitation is a key driver of plant leaf area to sapwood area ratio at the global scale. Plant,Cell & Environment 48 (1): 746–755.
5. He P. ,Lian J. ,Ye Q.,Liu H.,Zheng Y.,Yu K.,Zhu S.,Li R.,Yin D.,Ye W.,Wright IJ. (2022) How do functional traits influence tree demographic properties in a subtropical monsoon forest?. Functional Ecology 36(12):3200–3210.
6. He P.,Ye Q.,Hua L.,Zhu S.,Liu H.,Ning Q.,...& Qin X. (2023). Vein hierarchy mediates the two-dimensional relationship between leaf size and drought tolerance across subtropical forest tree species. Tree Physiology tpad141.
7. Liang X.#,He P.#,Liu H.,Zhu S.,Uyehara IK.,Hou H.,Wu G.,Zhang H.,You Z.,Xiao Y.,Ye Q. (2019) Precipitation has dominant influences on the variation of plant hydraulics of the native Castanopsis fargesii (Fagaceae) in subtropical China. Agricultural and Forest Meteorology 271: 83–91.
8. 贺鹏程,叶清(2019)基于植物功能性状的生态学研究进展:从个体水平到全球尺度. 热带亚热带植物学报,27(5):523–533.
其他论文:
9. Liu H.,Gleason S.M.,Hao G.,Hua L.,He P.,Goldstein G.,Ye Q. (2019) Hydraulic traits are coordinated with maximum plant height at the global scale. Science Advances 5(2):eaav1332.
10. Liang X.,Zhang T.,Lu X.,Ellsworth D.S.,BassiriRad H.,You C.,Wang D.,He P., Deng Q., Liu H.,Mo J.,Ye Q. (2020) Global response patterns of plant photosynthesis to nitrogen addition: A meta-analysis. Global Change Biology 26(6):3585–3600.
11. Kattge J.,Bönisch G.,Díaz S. et al. (inc. He P.) (2020) TRY plant trait database-enhanced coverage and open access. Global Change Biology 26(1):119–188.
12. Liu H.,Ye Q.,Gleason S.M.,He P., Yin D. (2021) Weak tradeoff between xylem hydraulic efficiency and safety: climatic seasonality matters. New Phytologist 229(3):1440–1452.
13. Liu X.,Yu K.,Liu H.,Phillips PR.,He P.,Liang X.,Tang W.,Terrer C., Novick AK.,Bakpa PE.,Zhao M.,Gao X.,Jin Y.,Wen Y.,Ye Q. (2024) Contrasting drought tolerance traits of woody plants is associated with mycorrhizal types at the global scale. New Phytologist 244 (5):2024–2035.
14. Jin Y.,Ye Q.,Liu X.,Liu H.,Gleason MS.,He P.,Liang X.,Wu G. (2024) Precipitation,solar radiation,and their interaction modify leaf hydraulic efficiency–safety trade‐off across angiosperms at the global scale. New Phytologist 244 (6):2267–2277.
15. Liu H.,Yin D.,He P.,Cadotte WM.,Q Ye. (2024) Linking plant functional traits to biodiversity under environmental change. Biological Diversity 1 (1),22–28.
16. Jiao R.,He P.,Bakpa PE.,Liao L.,Li Q.,Wu B.,Liu H. (2024) Different shifts in growth-defense tradeoff for above-and belowground of Miscanthus floridulus enhance tolerance to cadmium. Environmental and Experimental Botany 226,105951.
17. Xie Y.,Wang Y.,He P.,Zhang H.,Liu N.,Ren H.,Liu D.,Liu H.,Lu H.,Jian S.,Wang C.,Ye Q.,Cai J.,Liu H. (2025) Plant key functional traits in species adaptation and screening for vegetation restoration on coral islands. Journal of Environmental Management.
18. Tang W.,Liu X.,Liang X.,Liu H.,Yu K.,He P.,McAdam S.,Zhao H.,Ye Q. (2024) Hydraulic vulnerability difference between branches and roots increases with environmental aridity. Oecologia 205: 177–190.
19. Zhu S.,Li R.,He P.,Siddiq Z.,Cao K.,Ye Q. (2019) Large branch and leaf hydraulic safety margins in subtropical evergreen broadleaved forest. Tree Physiology 39: 1405–1415.
20. Liu X.,Liu H.,Gleason S.M.,Goldstein G.,Zhu S.,He P.,Hou H.,Li R.,Ye Q. (2019). Water transport from stem to stomata: the coordination of hydraulic and gas exchange traits across 33 subtropical woody species. Tree Physiology. 39(10):1665–1674.
21. Zhu S.,Chen Y.,Ye Q.,He P.,Liu H.,Li R.,Fu P.,Jiang G.,Cao K. (2018) Leaf turgor loss point is correlated with drought tolerance and leaf carbon economics traits. Tree Physiology 38: 658–663.
22. Zhang T.,Liang X.,Ye Q.,BassiriRad H.,Liu H., He P.,...& Fu S. (2021) Leaf hydraulic acclimation to nitrogen addition of two dominant tree species in a subtropical forest. Science of the Total Environment,771: 145415.
23. Wang Y.,Ni M.,Zeng W.,Huang D.,Xiang W.,He P.,Ye Q.,Cao K.,Zhu S. (2021) Coordination between leaf biomechanical resistance and hydraulic safety across 30 subtropical woody species. Annals of Botany, 128(2),183–191.
24. Zhu S.,Li R.,Song J., He P.,Liu H.,Berninger F.,Ye Q. (2015) Different leaf cost–benefit strategies of ferns distributed in contrasting light habitats of sub-tropical forests. Annals of Botany,117(3),497–506.
25. Hua L.,He P.,Goldstein G.,Liu H.,Yin D.,Zhu S.,Ye Q. (2020) Linking vein properties to leaf biomechanics across 58 woody species from a subtropical forest. Plant Biology 22 (2):212–220.
26. Ye X.,Bu W.,Hu X.,Wang F.,Sun R.,He P.,...& Chen,F. (2023). Are small trees more responsive to nutrient addition than large trees in an evergreen broadleaved forest?. Forest Ecology and Management 543: 121129.
27. Zhu S., He P.,Li R.,Fu S.,Lin Y.,Zhou L.,Cao K.,Ye Q. (2018) Drought tolerance traits predict survival ratio of native tree species planted in a subtropical degraded hilly area in South China. Forest Ecology and Management 418: 41–46.
28. Wu G.,Liu H.,Hua L.,Luo Q.,Lin Y.,He P.,Feng S.,Liu J.,Ye Q. (2018) Differential responses of stomata and photosynthesis to elevated temperature in two co-occurring subtropical forest tree species. Frontiers in Plant Science. 9,467.
29. Liu H.,Xu Q.,He P., Santiago L.,Yang K.,Ye Q. (2015) Strong phylogenetic signals and phylogenetic niche conservatism in eco-physiological traits across divergent lineages of Magnoliaceae. Scientific Reports,5,12246.
30. 韦伊,刘慧,贺鹏程,刘小容,叶清(2022)南亚热带不同演替阶段森林优势树种叶片构建成本与机械抗性的协同关系. 热带亚热带植物学报,30(04),483–491.
31. 徐龙,贺鹏程,张统,刘慧,叶清(2020)不同原生境的6种棕榈科植物叶片水力性状的对比研究. 热带亚热带植物学报,28(5),472–478.
32. 侯皓,刘慧,贺鹏程,华雷,许秋园,叶清(2019)木兰科常绿与落叶物种叶片构建策略的差异. 热带亚热带植物学报,27(3),272–278.
33. 罗琦,刘慧,吴桂林,贺鹏程,华雷,朱丽薇,张辉,刘楠,简曙光,叶清(2018)基于功能性状评价5种植物对热带珊瑚岛环境的适应性. 生态学报,38(4),1–8.
34. 林忆雪,刘慧,贺鹏程,吴桂林,华雷,张辉,傅声雷,刘楠,王俊,简曙光,叶清(2017)三种适生植物对热带珊瑚岛胁迫生境的生理生化响应. 热带亚热带植物学报,25(6),562–568.