Wright Ian J, Reich Peter B, Cornelissen Johannes H C, Falster Daniel S, Garnier Eric, Hikosaka Kouki, Lamont Byron B, Lee William, Oleksyn Jacek, Osada Noriyuki, Poorter Hendrik, Villar Rafael, Warton David I, Westoby Mark
Department of Biological Sciences, Macquarie University, NSW 2109, Australia.
New Phytol. 2005 May;166(2):485-96. doi: 10.1111/j.1469-8137.2005.01349.x.
Global-scale quantification of relationships between plant traits gives insight into the evolution of the world's vegetation, and is crucial for parameterizing vegetation-climate models. A database was compiled, comprising data for hundreds to thousands of species for the core 'leaf economics' traits leaf lifespan, leaf mass per area, photosynthetic capacity, dark respiration, and leaf nitrogen and phosphorus concentrations, as well as leaf potassium, photosynthetic N-use efficiency (PNUE), and leaf N : P ratio. While mean trait values differed between plant functional types, the range found within groups was often larger than differences among them. Future vegetation-climate models could incorporate this knowledge. The core leaf traits were intercorrelated, both globally and within plant functional types, forming a 'leaf economics spectrum'. While these relationships are very general, they are not universal, as significant heterogeneity exists between relationships fitted to individual sites. Much, but not all, heterogeneity can be explained by variation in sample size alone. PNUE can also be considered as part of this trait spectrum, whereas leaf K and N : P ratios are only loosely related.
对植物性状之间关系进行全球尺度的量化,有助于深入了解全球植被的演化,对于植被 - 气候模型的参数化至关重要。我们编制了一个数据库,其中包含数百至数千个物种的核心“叶片经济”性状数据,这些性状包括叶片寿命、单位面积叶质量、光合能力、暗呼吸以及叶片氮和磷浓度,还有叶片钾含量、光合氮利用效率(PNUE)和叶片氮磷比。虽然植物功能类型之间的平均性状值存在差异,但组内发现的范围通常大于组间差异。未来的植被 - 气候模型可以纳入这一知识。核心叶片性状在全球范围内以及植物功能类型内部都相互关联,形成了一个“叶片经济谱”。虽然这些关系非常普遍,但并非通用,因为拟合到各个地点的关系之间存在显著的异质性。大部分(但并非全部)异质性仅通过样本量的变化就能解释。PNUE也可被视为这一性状谱的一部分,而叶片钾含量和氮磷比的相关性则较弱。