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Effect of climate change on seasonal water use efficiency in subalpine Abies fabri 被引量:4

Effect of climate change on seasonal water use efficiency in subalpine Abies fabri
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摘要 Abies fabri is a typical subalpine dark coniferous forest in southwestern China. Air temperature increases more at high elevation areas than that at low elevation areas in mountainous regions,and climate change ratio is also uneven in different seasons. Carbon gain and the response of water use efficiency(WUE) to annual and seasonal increases in temperature with or without CO_2 fertilization were simulated in Abies fabri using the atmospheric-vegetation interaction model(AVIM2). Four future climate scenarios(RCP2.6,RCP4.5,RCP6.0 and RCP8.5) from the Coupled Model Intercomparison Project Phase 5(CMIP5) were selectively investigated. The results showed that warmer temperatures have negative effects on gross primary production(GPP) and net primary production(NPP) in growing seasons and positive effects in dormant seasons due to the variation in the leaf area index. Warmer temperatures tend to generate lower canopy WUE and higher ecosystem WUE in Abies fabri. However,warmer temperature together with rising CO_2 concentrations significantlyincrease the GPP and NPP in both growing and dormant seasons and enhance WUE in annual and dormant seasons because of the higher leaf area index(LAI) and soil temperature. The comparison of the simulated results with and without CO_2 fertilization shows that CO_2 has the potential to partially alleviate the adverse effects of climate warming on carbon gain and WUE in subalpine coniferous forests.
出处 《Journal of Mountain Science》 SCIE CSCD 2017年第1期142-157,共16页 山地科学学报(英文)
基金 supported by the Natural Science Foundation of China (No.41401044 and No.41310013) the key research projects of frontier sciences CAS (QYZDJ-SSW-DQC006) the Chinese Academy of Science (‘West Star’ project) the CAS/SAFEA international partnership program for creative research teams (KZZD-EW-TZ-06)
关键词 Climate change Carbon gain Water use efficiency Atmospheric-vegetation interaction model 水分利用效率 亚高山针叶林 生长季节 气候变化率 叶面积指数 相互作用模型 净初级生产力 土壤温度
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