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The Influence of Age, Location and Soil Conditions on the Allometry of Young Norway Spruce (Picea abies L. Karst.) Trees

机译:年龄,位置和土壤条件对挪威年轻云杉(Picea abies L. Karst。)树木的变构关系的影响

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摘要

In this study the influence of tree’s age, location (i.e. latitude and altitude) and soil conditions (i.e. pH, humus content, carbon to nitrogen ratio, cation exchange capacity and percent base saturation) on tree allometry was investigated. The data was collected from 22 Norway spruce (Picea abies L. Karst) plantations located in Eastern Carpathians of Romania, aged between 4 and 15. From each plantation a soil sample and 10 trees were collected for soil chemical properties and biomass measurements, respectively. Root collar diameter (RCD) and height (H) based allometric equations were developed for total tree and vegetative organs of the tree (i.e. stem, branches, needles and roots). Furthermore, the interaction between theudstandardised residuals of these models and the tested factors was analysed. In order to account for the random effect of the clustered data, the mixed-effect modelling procedure was used. The results have shown no influence of these factors (age, location and soil conditions) on RCD based models, except for branches biomass model which was linked to soil carbon/nitrogen ratio. The H based models, however, were significantly influenced by latitude and soil cation exchange capacity as a consequence of H/RCD ratio change with these factors. The trees were more likely to allocate more to height growth when growing in higher latitudes or on soils with higher values of cation exchange capacity.
机译:在这项研究中,研究了树木的年龄,位置(即纬度和海拔)和土壤状况(例如pH,腐殖质含量,碳氮比,阳离子交换能力和碱饱和度百分比)对树木异体感的影响。数据来自位于罗马尼亚东部喀尔巴阡山脉的22个挪威云杉(Picea abies L. Karst)人工林,年龄在4至15岁之间。从每个人工林中分别收集了土壤样本和10棵树木用于土壤化学性质和生物量测量。针对整个树木和树木的营养器官(即茎,枝,针和根),开发了基于根颈直径(RCD)和高度(H)的异速方程。此外,分析了这些模型的非标准化残差和测试因子之间的相互作用。为了解决聚类数据的随机效应,使用了混合效应建模程序。结果表明这些因素(年龄,位置和土壤条件)对基于RCD的模型没有影响,除了与土壤碳氮比相关的分支生物量模型。然而,由于H / RCD比率随这些因素的变化,基于H的模型受到纬度和土壤阳离子交换能力的显着影响。在较高纬度或阳离子交换能力较高的土壤上生长时,树木更有可能分配给更高的高度。

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