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未受干扰的亚马逊森林中树木群落的普遍变化。

Pervasive alteration of tree communities in undisturbed Amazonian forests.

作者信息

Laurance William F, Oliveira Alexandre A, Laurance Susan G, Condit Richard, Nascimento Henrique E M, Sanchez-Thorin Ana C, Lovejoy Thomas E, Andrade Ana, D'Angelo Sammya, Ribeiro José E, Dick Christopher W

机构信息

Smithsonian Tropical Research Institute, Apartado 2072, Balboa, Republic of Panamá.

出版信息

Nature. 2004 Mar 11;428(6979):171-5. doi: 10.1038/nature02383.

Abstract

Amazonian rainforests are some of the most species-rich tree communities on earth. Here we show that, over the past two decades, forests in a central Amazonian landscape have experienced highly nonrandom changes in dynamics and composition. Our analyses are based on a network of 18 permanent plots unaffected by any detectable disturbance. Within these plots, rates of tree mortality, recruitment and growth have increased over time. Of 115 relatively abundant tree genera, 27 changed significantly in population density or basal area--a value nearly 14 times greater than that expected by chance. An independent, eight-year study in nearby forests corroborates these shifts in composition. Contrary to recent predictions, we observed no increase in pioneer trees. However, genera of faster-growing trees, including many canopy and emergent species, are increasing in dominance or density, whereas genera of slower-growing trees, including many subcanopy species, are declining. Rising atmospheric CO2 concentrations may explain these changes, although the effects of this and other large-scale environmental alterations remain uncertain. These compositional changes could have important impacts on the carbon storage, dynamics and biota of Amazonian forests.

摘要

亚马逊雨林是地球上一些物种最为丰富的树木群落。我们在此表明,在过去二十年中,亚马逊中部地区景观中的森林在动态和组成方面经历了高度非随机的变化。我们的分析基于一个由18个不受任何可检测干扰影响的永久性样地组成的网络。在这些样地中,树木的死亡率、补充率和生长率随时间增加。在115个相对丰富的树木属中,有27个在种群密度或基部面积上发生了显著变化——这一数值几乎比随机预期值大14倍。在附近森林中进行的一项为期八年的独立研究证实了这些组成上的变化。与最近的预测相反,我们没有观察到先锋树种增加。然而,生长较快的树木属,包括许多树冠层和顶生树种,在优势度或密度上正在增加,而生长较慢的树木属,包括许多亚树冠层树种,正在减少。大气中二氧化碳浓度上升可能解释了这些变化,尽管这种变化以及其他大规模环境改变的影响仍不确定。这些组成变化可能对亚马逊森林的碳储存、动态和生物群产生重要影响。

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