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草原生态系统生物量分配的地理和年际变异性:实地数据综合分析

Geographical and interannual variability in biomass partitioning in grassland ecosystems: a synthesis of field data.

作者信息

Hui Dafeng, Jackson Robert B

机构信息

Department of Biology and Nicholas School of the Environment and Earth Sciences, Duke University, Durham, NC 27708, USA.

出版信息

New Phytol. 2006;169(1):85-93. doi: 10.1111/j.1469-8137.2005.01569.x.

Abstract

Biomass partitioning is an important variable in terrestrial ecosystem carbon modeling. However, geographical and interannual variability in f(BNPP), defined as the fraction of belowground net primary productivity (BNPP) to total NPP, and its relationship with climatic variables, have not been explored. Here we addressed these issues by synthesizing 94 site-year field biomass data at 12 grassland sites around the world from a global NPP database and from the literature. Results showed that f(BNPP) varied from 0.40 to 0.86 across 12 sites. In general, savanna and humid savanna ecosystems had smaller f(BNPP) but larger interannual variability in f(BNPP), and cold desert steppes had larger f(BNPP) but smaller interannual variability. While mean f(BNPP) at a site decreased significantly with increasing mean annual temperature and precipitation across sites, no consistent temporal response of f(BNPP) with annual temperature and precipitation was found within sites. Based on these results, both geographical variability in f(BNPP) and the divergent responses of f(BNPP) with climatic variables at geographical and temporal scales should be considered in global C modeling.

摘要

生物量分配是陆地生态系统碳建模中的一个重要变量。然而,地下净初级生产力(BNPP)占总初级生产力(NPP)的比例f(BNPP)的地理和年际变异性及其与气候变量的关系尚未得到探讨。在这里,我们通过综合全球NPP数据库和文献中来自世界各地12个草地站点的94个站点年的野外生物量数据来解决这些问题。结果表明,12个站点的f(BNPP)在0.40至0.86之间变化。一般来说,稀树草原和湿润稀树草原生态系统的f(BNPP)较小,但f(BNPP)的年际变异性较大,而寒冷荒漠草原的f(BNPP)较大,但年际变异性较小。虽然站点的平均f(BNPP)随着站点年均温度和降水量的增加而显著降低,但在站点内部未发现f(BNPP)对年温度和降水量有一致的时间响应。基于这些结果,在全球碳建模中应考虑f(BNPP)的地理变异性以及f(BNPP)在地理和时间尺度上对气候变量的不同响应。

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