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Approaching the serpentine factor at a local scalea study in an ultramafic area in northern Greece

机译:在希腊北部一个超镁铁质地区的局部规模研究中探讨蛇形因子

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We explore factors responsible for vegetation differentiation in a small-scale serpentine area, and attempt to provide new insights in the complexity of the serpentine factor at community level. We sampled 49 quadrats. From each quadrat physical and chemical soil parameters were measured and species composition, altitude, inclination, aspect and coordinates were recorded. Quadrats were classified and ordination analyses were used to explore the environmental gradients and to estimate the explanatory power of the variables. Generalized linear models were used to investigate the response of species to environmental factors. Variance partitioning was applied to calculate the proportion of variance attributed to different groups of explanatory variables. The gradients revealed were related to soil texture, nutrient contents, calcium deficiency, chromium content, climatic parameters and grazing and disturbance intensity. Variance partitioning showed that the highest proportions of variance were attributed to the nutrients and physiographic (including soil texture) variables, while smaller but notable proportions of variance were attributed to geographical coordinates and to metal contents. Our study shows that vegetation differentiation at a local scale is determined by a complex factor of soil properties and climatic parameters, together with variation in disturbance and succession.
机译:我们探索了小规模蛇形区植被分化的成因,并试图在社区层面为蛇形因子的复杂性提供新的见解。我们采样了49个四方组。从每个样方中测量物理和化学土壤参数,并记录物种组成,高度,倾斜度,纵横比和坐标。对Quadrats进行分类,并使用排序分析来探索环境梯度并估计变量的解释力。使用广义线性模型来研究物种对环境因素的响应。应用方差划分来计算归因于不同解释变量组的方差比例。所揭示的梯度与土壤质地,养分含量,钙缺乏,铬含量,气候参数以及放牧和干扰强度有关。方差划分显示,最高比例的差异归因于养分和地貌(包括土壤质地)变量,而较小但值得注意的差异比例则归因于地理坐标和金属含量。我们的研究表明,当地尺度上的植被分化是由土壤特性和气候参数的复杂因素以及扰动和演替的变化决定的。

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