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Stand age characteristics and soil properties affect species composition of vascular plants in short rotation coppice plantations

机译:林分年龄特征和土壤特性影响短轮矮小人工林中维管植物的种类组成

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Woody biomass plantations on agricultural sites are an attractive source of biomass for bioenergy, but their effects on local biodiversity are unclear. This study’s objective was to evaluate the influences of light availability, plantation age, and soil properties on phytodiversity in short rotation coppice (SRC) plantations. Ground vegetation mapping, irradiance measurement (PAR), and surface soil analyses were conducted in 15 willow and poplar SRC plantations in Central Sweden and Northern Germany. We performed different multivariate statistical methods like cluster analysis (CA), principal component analysis (PCA), and canonical correspondence analysis (CCA) in order to analyze species composition and the influence of irradiance, age, and soil properties on phytodiversity. CA revealed highest species composition similarities in SRC plantations in close proximity. PCA identified humus quality/essential plant nutrients, plantation age/irradiance effects, soil acidity and shoot age as the four principal components of the recorded parameters. The ground vegetation cover was negatively correlated with the plantation age component and positively with the nutrient component. With an increase in the plantation age component, a shift in species composition was proven towards more forest habitat species, more nutrient-demanding species, and increasing occurrence of indicator species for basic soils. Applying Ellenberg indicator values, basic soil indicator species corresponded in occurrence to increasing nutrient availability. However, species richness was not related to any of our studied site variables. Judged from CCA, species composition in SRC plantations was influenced by plantation age/irradiance, and nutrient availability; soil acidity and shoot age had no significant influence. Young poplar and willow SRC plantations showed greatest variation in photosynthetically active radiation (PAR). Our findings suggest that phytodiversity in SRC plantations depends mainly on plantation age and thus shifts over time.
机译:农业场所的木质生物质人工林是生物质用于生物能源的一种有吸引力的来源,但是它们对当地生物多样性的影响尚不清楚。这项研究的目的是评估短轮转小灌木林(SRC)人工林中光的可获得性,人工林的年龄和土壤特性对植物多样性的影响。在瑞典中部和德国北部的15个柳树和杨树SRC人工林中进行了地面植被测绘,辐照度测量(PAR)和表层土壤分析。为了分析物种组成以及辐照度,年龄和土壤特性对植物多样性的影响,我们执行了不同的多元统计方法,例如聚类分析(CA),主成分分析(PCA)和规范对应分析(CCA)。 CA揭示了SRC人工林附近物种的最高物种组成相似性。 PCA将腐殖质/基本植物养分,人工林年龄/辐照效应,土壤酸度和苗龄确定为记录参数的四个主要组成部分。地面植被覆盖度与人工林年龄成负相关,与养分成正相关。随着人工林年龄组成的增加,事实证明物种组成向更多的森林栖息地物种,更多的需要养分的物种以及基本土壤指示物种的发生转移。应用Ellenberg指标值,基本土壤指标物种在发生时对应于增加的养分利用率。但是,物种丰富度与我们研究的任何场所变量均无关。从CCA来看,SRC人工林的物种组成受人工林年龄/辐照度和养分利用率的影响;土壤酸度和苗龄无明显影响。杨树和柳树SRC人工林在光合有效辐射(PAR)中表现出最大的变化。我们的发现表明,SRC人工林的植物多样性主要取决于人工林的年龄,因此会随时间变化。

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