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Partitioning tree water usage into storage and transpiration in a mixed forest 被引量:4
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作者 Ziqiang Liu Qianqian Liu +3 位作者 zijun wei Xinxiao Yu Guodong Jia Jiang Jiang 《Forest Ecosystems》 SCIE CSCD 2021年第4期961-973,共13页
Background:Water migration and use are important processes in trees.However,it is possible to overestimate transpiration by equating the water absorbed through the plant roots to that diffused back to the atmosphere t... Background:Water migration and use are important processes in trees.However,it is possible to overestimate transpiration by equating the water absorbed through the plant roots to that diffused back to the atmosphere through stomatal transpiration.Therefore,it is necessary to quantify the water transpired and stored in plants.Method:The δ^(2)H/δ^(18)O technique and heat ratio method were used to explore the water usage of coniferous and broad-leaved tree species,including the proportions of water used for transpiration and water storage.Results:Platycladus orientalis and Quercus variabilis had strong plasticity in their water usage from different sources.Platycladus orientalis primarily used groundwater(30.5%)and the 60-100-cm soil layer(21.6%)throughout the experimental period and was sensitive to precipitation,absorbing water from the 0-20-cm layer(26.6%)during the rainy season.Quercus variabilis absorbed water from all sources(15.7%-36.5%)except from the 40-60-cm soil layer during the dry season.In addition,it did not change its water source but increased its groundwater uptake during the rainy season.The annual mean water fluxes of P.orientalis and Q.variabilis were 374.69 and 469.50 mm·year−1,with 93.49% and 93.91% of the water used for transpiration,respectively.However,nocturnal sap flow in P.orientalis and Q.variabilis was mainly used for water storage in the trunk rather than transpiration,which effectively alleviated drought stress and facilitated the transport of nutrients.Conclusions:The water stored in both species comprised 6%-7% of the total water fluxes and,therefore,should be considered in water balance models. 展开更多
关键词 Water migration Water uptake Nocturnal sap flow TRANSPIRATION
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辅助性T细胞17/调节性T细胞平衡与缺血性卒中
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作者 曹孟欣 韦紫君 张云云 《国际脑血管病杂志》 2021年第10期781-784,共4页
炎症免疫反应贯穿缺血性卒中病程的始终。不同亚群CD4+T细胞在缺血性卒中病程中起着复杂而重要的作用。其中,辅助性T细胞17(T helper cell 17,Th17)与调节性T细胞(regulatory T cell,Treg)的促炎与抑炎作用的平衡与卒中转归密切相关。... 炎症免疫反应贯穿缺血性卒中病程的始终。不同亚群CD4+T细胞在缺血性卒中病程中起着复杂而重要的作用。其中,辅助性T细胞17(T helper cell 17,Th17)与调节性T细胞(regulatory T cell,Treg)的促炎与抑炎作用的平衡与卒中转归密切相关。文章就Th17/Treg平衡在缺血性卒中中的作用进行了综述,旨在加深对缺血性卒中后免疫炎症机制的认识,同时探究缺血性卒中病程中可能的治疗靶点。 展开更多
关键词 卒中 脑缺血 TH17细胞 T-淋巴细胞 调控
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