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作 者:Suimeng Zhang Xiaodi Wang Zhaowang Huang YiTao Bao Jiang Jiang Ziqiang Liu
机构地区:[1]Yinshanbeilu Grassland Eco-hydrology National Observation and Research Station,China Institute of Water Resources and Hydropower Research,Beijing,100038,China [2]Co-Innovation Center for Sustainable Forestry in Southern China,Nanjing Forestry University,Nanjing 210037,China
出 处:《Forest Ecosystems》2025年第1期29-37,共9页森林生态系统(英文版)
基 金:supported by the National Natural Science Foundation of China(No.42377068);Jiangsu Provincial Natural Science Foundation(No.BK20231290);Yinshanbeilu Grassland Eco-hydrology National Observation and Research Station(China Institute of Water Resources and Hydropower Research,No.YSS2022003)the Qing Lan Project。
摘 要:Background:Seasonal precipitation variability significantly affects water use in forests;however,whether water uptake is adapted to changes in precipitation,particularly whether it could affect the coexistence of tree species,has rarely been quantified in forest systems.Method:In this study,dual stable isotopes and the Li-6400 portable photosynthesis system were used to determine the water sources of a mixed conifer(Pinus massoniana)and broadleaf(Quercus acutissima)forest and changes in hydraulic characteristics during the dry and wet seasons in a southern hilly region of China.Results:Although the hydraulic characteristics of P.massoniana were lower than those of Q.acutissima,it maintained a stable water source from the deep soil layer and a higher stomatal conductance(Gs),leading to a higher transpiration rate(Tr)during the growing seasons.Q.acutissima mainly absorbed water from deeper soil layers in the dry season and took up from shallow soil layers in the wet season.Its Gs values exhibited sensitivity to precipitation,while it maintained a lower Tr value during the growing seasons.The excessive water-use strategy observed in P.massoniana may confer weak drought-tolerance during higher frequency and more intense extreme precipitation events,whereas Q.acutissima may exhibit better ecological adaption to precipitation changes.Conclusions:The overlap of water niches in mixed forests did not appear to affect the coexistence of tree species.The present study provides insights into reforestation and water management in the southern hilly regions of China.
关 键 词:Water use TRANSPIRATION Stable isotope Hydraulic characteristics
分 类 号:S792.181[农业科学—林木遗传育种]
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