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Tree growth acceleration and expansion of alpine forests: The synergistic effect of atmospheric and edaphic change

机译:高寒森林树木的生长加速和扩展:大气和水生变化的协同效应

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摘要

Many forest ecosystems have experienced recent declines in productivity; however, in some alpine regions, tree growth and forest expansion are increasing at marked rates. Dendrochronological analyses at the upper limit of alpine forests in the Tibetan Plateau show a steady increase in tree growth since the early 1900s, which intensified during the 1930s and 1960s, and have reached unprecedented levels since 1760. This recent growth acceleration was observed in small/young and large/old trees and coincided with the establishment of trees outside the forest range, reflecting a connection between the physiological performance of dominant species and shifts in forest distribution. Measurements of stable isotopes (carbon, oxygen, and nitrogen) in tree rings indicate that tree growth has been stimulated by the synergistic effect of rising atmospheric CO2 and a warming-induced increase in water and nutrient availability from thawing permafrost. These findings illustrate the importance of considering soil-plant-atmosphere interactions to understand current and anticipate future changes in productivity and distribution of forest ecosystems.
机译:最近,许多森林生态系统的生产力下降。但是,在一些高山地区,树木的生长和森林的扩张以明显的速度增长。对青藏高原高山森林上限的树木年代学分析显示,自1900年代初以来,树木生长稳定增长,在1930年代和1960年代加剧了树木的生长,自1760年以来达到了前所未有的水平。幼树和大树/老树,并与森林范围以外树木的建立相吻合,反映了优势树种的生理性能与森林分布变化之间的联系。对树木年轮中稳定同位素(碳,氧和氮)的测量表明,大气二氧化碳含量的升高以及永久性冻土融化引起的水和养分利用率的增高共同作用,刺激了树木的生长。这些发现说明了考虑土壤-植物-大气相互作用以理解森林生态系统生产力和分布的当前变化并预测其未来变化的重要性。

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