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Allocation of forest biomass across broad precipitation gradients in China’s forests

机译:中国森林中不同降水梯度下森林生物量的分配

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摘要

Forests act as major sinks for atmospheric CO2. An understanding of the relationship between forest biomass allocation and precipitation gradients is needed to estimate the impacts of changes in precipitation on carbon stores. Biomass patterns depend on tree size or age, making it unclear whether biomass allocation is limited by tree age at regional scales. Using a dataset of ten typical forest types spanning a large age scale, we evaluated forest biomass allocation–precipitation correlations with the aim of testing whether biomass allocation patterns vary systematically in response to altered precipitation. With increasing mean annual precipitation, a significant quadratic increase occurred in ≤30 yr and >60 yr groups in stem biomass, >60 yr group in branch biomass, and >60 yr groups in leaf biomass; and a significant cubic increase occurred in 30–60 yr and all age forest groups in stem biomass, ≤30 yr, 30–60 yr and all age forest groups in branch biomass, ≤30 yr and all age forest groups in leaf biomass, and in each group in root biomass, indicating that organ biomass is strongly limited by precipitation. Thus, forest biomass responds predictably to changes in mean annual precipitation. The results suggest that forest organ biomass–precipitation relationships hold across independent datasets that encompass a broad climatic range and forest age.
机译:森林是大气二氧化碳的主要汇。需要了解森林生物量分配与降水梯度之间的关系,以估算降水变化对碳储量的影响。生物量模式取决于树木的大小或年龄,因此不清楚区域范围内生物量的分配是否受到树木年龄的限制。我们使用跨年龄段的十种典型森林类型的数据集,评估了森林生物量分配与降水的相关性,目的是测试生物量分配模式是否响应降水变化而系统地变化。随着年平均降水量的增加,茎生物量的≤30yr组和> 60 yr组,枝条生物量> 60 yr组和叶片生物量> 60 yr组发生了显着的二次增加。在30至60岁和所有年龄段的森林中,茎生物量,≤30岁,30至60岁和所有年龄段的森林中分支生物量,≤30岁和所有年龄段的森林叶片生物量均显着增加。在根生物量的每个组中,表明器官生物量受降水的强烈限制。因此,森林生物量可预测地响应年平均降水量的变化。结果表明,森林器官生物量与降水的关系在涵盖广泛的气候范围和森林年龄的独立数据集之间保持一致。

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