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首页> 外文期刊>International Journal of Ecology >Experimental Study of Environmental Effects: Leaf Traits of Juvenile Fagus sylvatica, Acer pseudoplatanus, and Carpinus betulus Are Comparable to Leaves of Mature Trees in Upper Canopies
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Experimental Study of Environmental Effects: Leaf Traits of Juvenile Fagus sylvatica, Acer pseudoplatanus, and Carpinus betulus Are Comparable to Leaves of Mature Trees in Upper Canopies

机译:环境影响的实验研究:幼林,宏A和Car望子的叶片性状与上部冠层的成熟树的叶片可比

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摘要

Morphological and functional leaf traits like leaf toughness and nutrient content are essentially influenced by the environment, especially through light and climatic conditions. Varying light conditions have been identified as a significant predictor for the variation of many leaf traits. However, the leaf acclimation to light is suggested to be of secondary importance. The aim of the experimental study was to analyse environmental effects (microclimate and soil moisture), which are present in upper canopies of forest stands, on leaf traits of juvenile Fagus sylvatica L. (European beech; Fagaceae), Acer pseudoplatanus L. (sycamore maple; Sapindaceae), and Carpinus betulus L. (hornbeam; Betulaceae). The experimental design managed to imitate two distinct microclimates causing different temperature and air humidity conditions. Furthermore, the irrigation treatment with different levels of applied water caused distinct soil moisture conditions in the trial pots. As a result of the treatments, leaves of C. betulus showed a tendency of decreased specific leaf area (SLA) caused by the treatment with warmer and drier microclimate. The environmental effect on SLA was even stronger with lower soil moisture conditions. Chlorophyll content showed lower values in treatments with higher soil moisture conditions in both greenhouses for F. sylvatica and A. pseudoplatanus. The trends are in accordance with combined effects of temperature, air humidity, and soil moisture on SLA, and increased leaf chlorophyll content caused by slight drought stress. Plants in the greenhouses were exposed to full sunlight indicating a microclimatic environment comparable to upper canopies in forest stands. The comparable SLA and chlorophyll content between leaves of mature F. sylvatica trees in upper canopies and juvenile trees of the greenhouses suggest similar environmental conditions instead of ontogenetic effects that are responsible for the formation of leaf trait characteristics.
机译:叶片的形态和功能特征(例如叶片韧性和营养成分)基本上受环境影响,尤其是在光照和气候条件下。多种光照条件已被确定为许多叶片性状变化的重要预测指标。但是,建议使叶片适应光照是次要的。实验研究的目的是分析环境影响(小气候和土壤湿度),这些环境影响存在于林分上部冠层上,对幼小Fagus sylvatica L.(欧洲山毛榉;山毛榉科),Acer pseudoplatanus L.(无花果)的叶片性状产生影响。枫; Sapindaceae)和Carpinus betulus L.(角树; Betulaceae)。实验设计设法模仿了导致不同温度和空气湿度条件的两个不同的微气候。此外,用不同水平的水进行灌溉处理,在试验盆中引起了明显的土壤湿度条件。处理的结果是,由于用更干燥的小气候进行处理,导致桔梗的叶片显示出比叶面积(SLA)减小的趋势。在较低的土壤湿度条件下,对SLA的环境影响甚至更大。叶绿素含量在较高的土壤湿度条件下,在两个温室中均受到较低的影响。这种趋势与温度,空气湿度和土壤水分对SLA的综合影响以及轻微干旱胁迫导致的叶绿素含量增加有关。温室中的植物都暴露在充分的阳光下,这表明微气候环境与林分中的上部树冠相当。较高冠层的成熟西番莲树的叶子与温室的幼树之间的叶子中可比的SLA和叶绿素含量表明相似的环境条件,而不是负责叶片性状特征形成的遗传作用。

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