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Linking functional traits and climate-growth relationships in Mediterranean species through wood density

机译:通过木质密度将地中海物种中的功能性状和气候增长关系联系起来

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Functional traits are considered to influence the performance of woody plants. However, few field studies have tested this idea by using radial-growth data. Here, I test if five major traits of the leaf- and wood-economics spectra (height, leaf area, specific leaf area-SLA, wood density - WD and hydraulic diameter) explain climate-growth relationships in 14 Mediterranean trees and shrubs. Traits were measured for both gymnosperm (four Juniperus species plus three Pinus species) and angiosperm species (two Quercus species, two Pistacia species, Arbutus unedo, Celtis australis, and one Tamarix species). Climate-growth relationships were calculated relating ring-width indices (RWIs) and local climate data. Leaf area and SLA were high in broadleaf deciduous species (e.g., C. australis), and low in junipers. WD reached minimum and maximum values in pine and oak species, respectively. WD explained 45% of the variation of the association observed between RWI and April precipitation, one of the main climatic variables driving radial growth. Therefore, WD is a relevant functional trait useful to predict the performance of Mediterranean woody plant species, specifically concerning their growth responses to climate. Functional traits as WD should be further explored to explain growth variability between and within woody species, and to link this variability with responsiveness to climate and ecosystem productivity.
机译:函数性状被认为是影响木质植物的性能。然而,利用径向生长数据测试了很少的现场研究。在这里,我测试了叶子和木质经济学谱的五个主要特征(高度,叶面积,特定叶片区域 - SLA,木质密度 - WD和液压直径)解释了14个地中海和灌木的气候生长关系。针对裸子植物(四种juniperus种类加上三种Pinus种)和贪眼物种(两种栎属物种,两个松下物种,arbutus unedo,celtis austras和一个tamarix物种)测量特征。气候增长关系是计算环宽指数(RWIS)和局部气候数据的计算。叶子区域和SLA在阔叶落叶物种(例如,C. Australis)和少年较低。 WD分别达到了松树和橡木物种的最小值和最大值。 WD解释了45%的协会在RWI和4月降水之间观察到的变化,这是推动径向生长的主要气候变量之一。因此,WD是一种有助于预测地中海木质植物物种的性能的相关功能性质,具体涉及其对气候的生长反应。应该进一步探索作为WD的功能性状,以解释木质物种之间的增长变异性,并将这种可变性与对气候和生态系统生产力的响应性联系起来。

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