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森林树木的生活节奏。

The pace of life for forest trees.

机构信息

Institute of Integrative Biology, ETH Zurich (Swiss Federal Institute of Technology), 8092 Zurich, Switzerland.

Forest Health and Biotic Interactions, Swiss Federal Research Institute WSL, 8903 Birmensdorf, Switzerland.

出版信息

Science. 2024 Oct 4;386(6717):92-98. doi: 10.1126/science.adk9616. Epub 2024 Oct 3.

Abstract

Tree growth and longevity trade-offs fundamentally shape the terrestrial carbon balance. Yet, we lack a unified understanding of how such trade-offs vary across the world's forests. By mapping life history traits for a wide range of species across the Americas, we reveal considerable variation in life expectancies from 10 centimeters in diameter (ranging from 1.3 to 3195 years) and show that the pace of life for trees can be accurately classified into four demographic functional types. We found emergent patterns in the strength of trade-offs between growth and longevity across a temperature gradient. Furthermore, we show that the diversity of life history traits varies predictably across forest biomes, giving rise to a positive relationship between trait diversity and productivity. Our pan-latitudinal assessment provides new insights into the demographic mechanisms that govern the carbon turnover rate across forest biomes.

摘要

树木生长和寿命的权衡关系从根本上塑造了陆地碳平衡。然而,我们缺乏对这种权衡关系在全球森林中如何变化的统一认识。通过为美洲各地的广泛物种绘制生命历史特征图,我们揭示了直径为 10 厘米的树木的预期寿命存在相当大的差异(范围从 1.3 年到 3195 年),并表明树木的生活节奏可以准确地分为四个人口统计学功能类型。我们在温度梯度上发现了生长和寿命之间权衡关系强度的显著模式。此外,我们表明,生命历史特征的多样性在森林生物群落中具有可预测的变化,导致特征多样性和生产力之间存在正相关关系。我们的跨纬度评估为控制森林生物群落中碳周转率的人口统计机制提供了新的见解。

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