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Seasonal dynamics and age of stemwood nonstructural carbohydrates in temperate forest trees

机译:温带林木中茎木非结构性碳水化合物的季节动态和年龄

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摘要

Nonstructural carbohydrate reserves support tree metabolism and growth when current photosynthates are insufficient, offering resilience in times of stress. We monitored stemwood nonstructural carbohydrate (starch and sugars) concentrations of the dominant tree species at three sites in the northeastern United States. We estimated the mean age of the starch and sugars in a subset of trees using the radiocarbon (¹⁴C) bomb spike. With these data, we then tested different carbon (C) allocation schemes in a process-based model of forest C cycling. We found that the nonstructural carbohydrates are both highly dynamic and about a decade old. Seasonal dynamics in starch (two to four times higher in the growing season, lower in the dormant season) mirrored those of sugars. Radiocarbon-based estimates indicated that the mean age of the starch and sugars in red maple (Acer rubrum) was 7-14 yr. A two-pool (fast and slow cycling reserves) model structure gave reasonable estimates of the size and mean residence time of the total NSC pool, and greatly improved model predictions of interannual variability in woody biomass increment, compared with zero- or one-pool structures used in the majority of existing models. This highlights the importance of nonstructural carbohydrates in the context of forest ecosystem carbon cycling.
机译:当当前的光合产物不足时,非结构性碳水化合物储备可支持树木的新陈代谢和生长,从而在压力时提供弹性。我们在美国东北部的三个地点监控了优势树种的树干木材非结构性碳水化合物(淀粉和糖)浓度。我们使用放射性碳(¹C)炸弹峰值估计了树木的一部分中淀粉和糖的平均年龄。利用这些数据,我们然后在基于过程的森林C循环模型中测试了不同的碳(C)分配方案。我们发现非结构性碳水化合物既具有高度动态性,又具有大约十年的历史。淀粉的季节性变化(在生长季节高出两到四倍,在休眠季节低出),反映了糖的变化。基于放射性碳的估计值表明,红枫(Acer rubrum)中淀粉和糖的平均年龄为7-14岁。两池(快速和慢速循环储量)模型结构对总NSC库的大小和平均停留时间给出了合理的估计,与零池或单池相比,木质生物量增量的年际变化的模型预测得到了极大的改善大多数现有模型中使用的结构。这突出了非结构性碳水化合物在森林生态系统碳循环中的重要性。

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