蒸腾作用
环境科学
含水量
旱季
生长季节
生态系统
水文学(农业)
农学
大气科学
生态学
植物
光合作用
生物
地质学
岩土工程
作者
Yakir Preisler,Teemu Hölttä,José M. Grünzweig,Itay Oz,Fedör Tatarinov,Nadine K. Ruehr,Eyal Rotenberg,Dan Yakir
出处
期刊:Tree Physiology
[Oxford University Press]
日期:2021-10-30
卷期号:42 (4): 771-783
被引量:37
标识
DOI:10.1093/treephys/tpab144
摘要
Global warming and drying trends, as well as the increase in frequency and intensity of droughts, may have unprecedented impacts on various forest ecosystems. We assessed the role of internal water storage (WS) in drought resistance of mature pine trees in the semi-arid Yatir Forest. Transpiration (T), soil moisture and sap flow (SF) were measured continuously, accompanied by periodical measurements of leaf and branch water potential (Ψleaf) and water content (WC). The data were used to parameterize a tree hydraulics model to examine the impact of WS capacitance on the tree water relations. The results of the continuous measurements showed a 5-h time lag between T and SF in the dry season, which peaked in the early morning and early afternoon, respectively. A good fit between model results and observations was only obtained when the empirically estimated WS capacitance was included in the model. Without WS during the dry season, Ψleaf would drop below a threshold known to cause hydraulic failure and cessation of gas exchange in the studied tree species. Our results indicate that tree WS capacitance is a key drought resistance trait that could enhance tree survival in a drying climate, contributing up to 45% of the total daily transpiration during the dry season.
科研通智能强力驱动
Strongly Powered by AbleSci AI