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叶片养分而非比叶面积是养分输入增加的一致指示物。

Leaf nutrients, not specific leaf area, are consistent indicators of elevated nutrient inputs.

机构信息

Queensland University of Technology, Brisbane, 4000, Queensland, Australia.

Département de Sciences Biologiques, Université de Montréal, Montréal, Quebec, Canada.

出版信息

Nat Ecol Evol. 2019 Mar;3(3):400-406. doi: 10.1038/s41559-018-0790-1. Epub 2019 Feb 4.

Abstract

Leaf traits are frequently measured in ecology to provide a 'common currency' for predicting how anthropogenic pressures impact ecosystem function. Here, we test whether leaf traits consistently respond to experimental treatments across 27 globally distributed grassland sites across 4 continents. We find that specific leaf area (leaf area per unit mass)-a commonly measured morphological trait inferring shifts between plant growth strategies-did not respond to up to four years of soil nutrient additions. Leaf nitrogen, phosphorus and potassium concentrations increased in response to the addition of each respective soil nutrient. We found few significant changes in leaf traits when vertebrate herbivores were excluded in the short-term. Leaf nitrogen and potassium concentrations were positively correlated with species turnover, suggesting that interspecific trait variation was a significant predictor of leaf nitrogen and potassium, but not of leaf phosphorus concentration. Climatic conditions and pretreatment soil nutrient levels also accounted for significant amounts of variation in the leaf traits measured. Overall, we find that leaf morphological traits, such as specific leaf area, are not appropriate indicators of plant response to anthropogenic perturbations in grasslands.

摘要

叶片特征在生态学中经常被测量,以提供一种“通用货币”,用于预测人为压力如何影响生态系统功能。在这里,我们测试了叶片特征是否在 4 大洲 27 个全球分布的草原地点的实验处理中始终一致地响应。我们发现,比叶面积(单位质量的叶面积)-一种常用的形态特征推断植物生长策略之间的转变-并没有对长达四年的土壤养分添加做出响应。叶片氮、磷和钾浓度随着每种土壤养分的添加而增加。我们发现,当短期内排除脊椎动物食草动物时,叶片特征几乎没有发生显著变化。叶片氮和钾浓度与物种周转率呈正相关,这表明种间特征差异是叶片氮和钾的重要预测因子,但不是叶片磷浓度的重要预测因子。气候条件和预处理土壤养分水平也解释了所测量的叶片特征的大量变异。总的来说,我们发现叶片形态特征,如比叶面积,不是草原植物对人为干扰响应的合适指标。

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