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首页> 外文期刊>The Journal of Ecology >Interspecific variation in functional traits, not climatic differences among species ranges, determines demographic rates across 44 temperate and Mediterranean tree species
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Interspecific variation in functional traits, not climatic differences among species ranges, determines demographic rates across 44 temperate and Mediterranean tree species

机译:功能性状的种间差异而非物种范围之间的气候差异决定了44种温带和地中海树木物种的人口统计率

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1. Surprisingly little is known about the relationship between functional traits and demographic rates of tree species under field conditions, particularly for non-tropical species. 2. We studied the interspecific relationship between key functional traits (wood density (WD), maximum tree height, specific leaf area, nitrogen (N) content of leaves, leaf size and seed mass), demographic rates (relative growth rate (RGR) and mortality rate (MR)) and climatic niche for the 44 most abundant tree species in Spain. 3. Demographic data were derived from the Spanish Forest Inventory, a repeated-measures scheme including c. 90 000 permanent plots spread over a territory of c. 500 000 kmpo. Functional traits data came primarily from a more detailed forest inventory carried out in Catalonia, NE Spain. 4. Our study region covers a wide range of climatic conditions and, not surprisingly, the studied species differed markedly in their climatic niche. Despite that fact, our results showed that the variability in demographic rates across species was much more related to differences in functional traits than to differences in the average climate among species. 5. Maximum tree height and, particularly, WD, emerged as key functional traits, and were the best predictors of demographic rates in our study. These two variables also mediated the marginally significant relationship between RGR and MR, suggestive of a weak trade-off between growth and survival. 6. The main aspects of our results were not altered by the explicit incorporation of phylogenetic effects, suggesting that the observed relationships are not due to divergences between a few major clades. 7. Synthesis. Our study gives support to the notion that variation in functional traits across species allows them to perform largely independently of climatic conditions along environmental gradients.
机译:1.令人惊讶的是,在田间条件下,特别是非热带树种,对树种的功能性状与人口统计率之间的关系知之甚少。 2.我们研究了关键功能性状(木材密度(WD),最大树高,比叶面积,叶片氮(N)含量,叶片大小和种子质量)之间的种间关系,人口统计率(相对生长率(RGR)和死亡率(MR))和西班牙的44种最丰富树种的气候生态位。 3.人口数据来自西班牙森林清单,这是一个重复测量方案,其中包括c。在c领土上分布着90 000个永久地块。 500 000 kmpo。功能性状数据主要来自在西班牙东北加泰罗尼亚进行的更详细的森林清单。 4.我们的研究区域涵盖了广泛的气候条件,毫不奇怪,所研究的物种在气候生态位上有显着差异。尽管如此,我们的研究结果表明,物种间人口统计学差异的变化与功能性状的差异关系更大,而与物种之间的平均气候差异无关。 5.最大的树高,特别是WD,已成为关键的功能性状,并且是我们研究中人口率的最佳预测指标。这两个变量还介导了RGR和MR之间的边际显着关系,表明生长和生存之间的平衡较弱。 6.我们的结果的主要方面没有因系统发育效应的明确结合而改变,这表明观察到的关系不是由于几个主要进化枝之间的分歧所致。 7.合成。我们的研究支持以下观点:物种间的功能性状变异使它们在很大程度上不受环境条件沿气候梯度的影响。

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