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中国东部南北样带森林生态系统WUE和NUE空间格局及驱动因子(英文)
引用本文:盛文萍,任书杰,于贵瑞,方华军,姜春明,张弥.中国东部南北样带森林生态系统WUE和NUE空间格局及驱动因子(英文)[J].地理学报(英文版),2011,21(4):651-665.
作者姓名:盛文萍  任书杰  于贵瑞  方华军  姜春明  张弥
作者单位:Key Laboratory of Ecosystem Network Observation and Modeling;Synthesis Research Center of Chinese Ecosystem Research Network;Institute of Geographic Sciences and Natural Resources Research;CAS;Graduate University of Chinese Academy of Sciences;Institute of Applied Ecology;
基金项目:National Natural Science Foundation of China, No.30590381; No.31000211; National Basic Research Program of China, No.2010CB833504
摘    要:From July 2008 to August 2008, 72 leaf samples from 22 species and 81 soil samples in the nine natural forest ecosystems were collected, from north to south along the North-South Transect of Eastern China (NSTEC). Based on these samples, we studied the geographical distribution patterns of vegetable water use efficiency (WUE) and nitrogen use efficiency (NUE), and analyzed their relationship with environmental factors. The vegetable WUE and NUE were calculated through the measurement of foliar δ 13C and C/N of predominant species, respectively. The results showed: (1) vegetable WUE, ranging from 2.13 to 28.67 mg C g-1 H2O, increased linearly from south to north in the representative forest ecosystems along the NSTEC, while vegetable NUE showed an opposite trend, increasing from north to south, ranging from 12.92 to 29.60 g C g-1 N. (2) Vegetable WUE and NUE were dominantly driven by climate and significantly affected by soil nutrient factors. Based on multiple stepwise regression analysis, mean annual temperature, soil phosphorus concentration, and soil nitrogen concentration were responding for 75.5% of the variations of WUE (p<0.001). While, mean annual precipitation and soil phosphorus concentration could explain 65.7% of the change in vegetable NUE (p<0.001). Moreover, vegetable WUE and NUE would also be seriously influenced by atmospheric nitrogen deposition in nitrogen saturated ecosystems. (3) There was a significant trade-off relationship between vegetable WUE and NUE in the typical forest ecosystems along the NSTEC (p<0.001), indicating a balanced strategy for vegetation in resource utilization in natural forest ecosystems along the NSTEC. This study suggests that global change would impact the resource use efficiency of forest ecosystems. However, vegetation could adapt to those changes by increasing the use efficiency of shortage resource while decreasing the relatively ample one. But extreme impacts, such as heavy nitrogen deposition, would break this trade-off mechanism and give a dramatic disturbance to the ecosystem biogeochemical cycle.

关 键 词:water  use  efficiency  (WUE)  nitrogen  use  efficiency  (NUE)  δ  13C  C/N  North-South  Transect  of  Eastern  China  (NSTEC)
收稿时间:17 May 2011

Patterns and driving factors of WUE and NUE in natural forest ecosystems along the North-South Transect of Eastern China
Wenping?Sheng,Shujie?Ren,Guirui?Yu,Huajun?Fang,Chunming?Jiang,Mi?Zhang.Patterns and driving factors of WUE and NUE in natural forest ecosystems along the North-South Transect of Eastern China[J].Journal of Geographical Sciences,2011,21(4):651-665.
Authors:Wenping Sheng  Shujie Ren  Guirui Yu  Huajun Fang  Chunming Jiang  Mi Zhang
Institution:1. Key Laboratory of Ecosystem Network Observation and Modeling, Synthesis Research Center of Chinese Ecosystem Research Network, Institute of Geographic Sciences and Natural Resources Research, CAS,Beijing 100101, China;Graduate University of Chinese Academy of Sciences, Beijing 100094, China
2. Key Laboratory of Ecosystem Network Observation and Modeling, Synthesis Research Center of Chinese Ecosystem Research Network, Institute of Geographic Sciences and Natural Resources Research, CAS,Beijing 100101, China
3. Institute of Applied Ecology, CAS, Shenyang 110016, China
Abstract:From July 2008 to August 2008, 72 leaf samples from 22 species and 81 soil samples in the nine natural forest ecosystems were collected, from north to south along the North-South Transect of Eastern China (NSTEC). Based on these samples, we studied the geographical distribution patterns of vegetable water use efficiency (WUE) and nitrogen use efficiency (NUE), and analyzed their relationship with environmental factors. The vegetable WUE and NUE were calculated through the measurement of foliar δ 13C and C/N of predominant species, respectively. The results showed: (1) vegetable WUE, ranging from 2.13 to 28.67 mg C g?1 H2O, increased linearly from south to north in the representative forest ecosystems along the NSTEC, while vegetable NUE showed an opposite trend, increasing from north to south, ranging from 12.92 to 29.60 g C g?1 N. (2) Vegetable WUE and NUE were dominantly driven by climate and significantly affected by soil nutrient factors. Based on multiple stepwise regression analysis, mean annual temperature, soil phosphorus concentration, and soil nitrogen concentration were responding for 75.5% of the variations of WUE (p<0.001). While, mean annual precipitation and soil phosphorus concentration could explain 65.7% of the change in vegetable NUE (p<0.001). Moreover, vegetable WUE and NUE would also be seriously influenced by atmospheric nitrogen deposition in nitrogen saturated ecosystems. (3) There was a significant trade-off relationship between vegetable WUE and NUE in the typical forest ecosystems along the NSTEC (p<0.001), indicating a balanced strategy for vegetation in resource utilization in natural forest ecosystems along the NSTEC. This study suggests that global change would impact the resource use efficiency of forest ecosystems. However, vegetation could adapt to those changes by increasing the use efficiency of shortage resource while decreasing the relatively ample one. But extreme impacts, such as heavy nitrogen deposition, would break this trade-off mechanism and give a dramatic disturbance to the ecosystem biogeochemical cycle.
Keywords:water use efficiency (WUE)  nitrogen use efficiency (NUE)  δ13C  C/N  North-South Transect of Eastern China (NSTEC)
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