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Biogeographical patterns of biomass allocation in leaves, stems, and roots in China’s forests

机译:中国森林叶片,茎和根中生物量分配的生物地理模式

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To test whether there are general patterns in biomass partitioning in relation to environmental variation when stand biomass is considered, we investigated biomass allocation in leaves, stems, and roots in China’s forests using both the national forest inventory data (2004–2008) and our field measurements (2011–2012). Distribution patterns of leaf, stem, and root biomass showed significantly different trends according to latitude, longitude, and altitude, and were positively and significantly correlated with stand age and mean annual precipitation. Trade-offs among leaves, stems, and roots varied with forest type and origin and were mainly explained by stand biomass. Based on the constraints of stand biomass, biomass allocation was also influenced by forest type, origin, stand age, stand density, mean annual temperature, precipitation, and maximum temperature in the growing season. Therefore, after stand biomass was accounted for, the residual variation in biomass allocation could be partially explained by stand characteristics and environmental factors, which may aid in quantifying carbon cycling in forest ecosystems and assessing the impacts of climate change on forest carbon dynamics in China.
机译:为了检验在考虑林分生物量时是否存在与环境变化相关的生物量分配的一般模式,我们使用国家森林清单数据(2004-2008年)和我们的研究领域调查了中国森林中叶,茎和根的生物量分配测量(2011-2012年)。叶片,茎和根生物量的分布模式根据纬度,经度和海拔高度显示出显着不同的趋势,并且与林分年龄和年平均降水量呈正相关且显着相关。叶子,茎和根之间的权衡取舍因森林类型和起源而异,并且主要由林分生物量来解释。根据林分生物量的限制,生物量分配还受到森林类型,起源,林分年龄,林分密度,年平均温度,降水和生长季节的最高温度的影响。因此,在计算林分生物量后,生物量分配的剩余变化可以部分由林分特征和环境因素来解释,这可能有助于量化森林生态系统中的碳循环并评估气候变化对中国森林碳动态的影响。

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