Herrera-Ramírez David, Muhr Jan, Hartmann Henrik, Römermann Christine, Trumbore Susan, Sierra Carlos A
Max Planck Institute for Biogeochemistry, Hans-Knöll-Str 10, Jena, 07745, Germany.
Department of Bioclimatology, Georg August University Göttingen, Büsgenweg 2, Göttingen, 37077, Germany.
New Phytol. 2020 Jun;226(5):1299-1311. doi: 10.1111/nph.16461. Epub 2020 Mar 12.
●In trees, the use of nonstructural carbon (NSC) under limiting conditions impacts the age structure of the NSC pools. We compared model predictions of NSC ages and transit times for Pinus halepensis, Acer rubrum and Pinus taeda, to understand differences in carbon (C) storage dynamics in species with different leaf phenology and growth environments. ●We used two C allocation models from the literature to estimate the NSC age and transit time distributions, to simulate C limitation, and to evaluate the sensitivity of the mean ages to changes in allocation fluxes. ●Differences in allocation resulted in different NSC age and transit time distributions. The simulated starvation flattened the NSC age distribution and increased the mean NSC transit time, which can be used to estimate the age of the NSC available and the time it would take to exhaust the reserves. Mean NSC ages and transit times were sensitive to C fluxes in roots and allocation of C from wood storage. ●Our results demonstrate how trees with different storage traits are expected to react differently to starvation. They also provide a probabilistic explanation for the 'last-in, first-out' pattern of NSC mobilization from well-mixed C pools.
●在树木中,在限制条件下非结构性碳(NSC)的利用会影响NSC库的年龄结构。我们比较了地中海松、红枫和火炬松的NSC年龄和转运时间的模型预测结果,以了解具有不同叶物候和生长环境的物种在碳(C)储存动态方面的差异。●我们使用文献中的两个碳分配模型来估计NSC年龄和转运时间分布,模拟碳限制,并评估平均年龄对分配通量变化的敏感性。●分配差异导致了不同的NSC年龄和转运时间分布。模拟的饥饿使NSC年龄分布变平,并增加了平均NSC转运时间,这可用于估计可用NSC的年龄以及耗尽储备所需的时间。平均NSC年龄和转运时间对根系中的碳通量以及木材储存中碳的分配敏感。●我们的结果表明,具有不同储存特征的树木对饥饿的反应预计会有所不同。它们还为从充分混合的碳库中动员NSC的“后进先出”模式提供了概率解释。