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Fine root dynamics in Slovenian beech forests in relation to soil temperature and water availability

机译:斯洛文尼亚山毛榉森林的细根动态与土壤温度和水分供应的关系

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摘要

The ingrowth and mortality of European beech (Fagus sylvatica L.) fine roots (diameters < 2 mm) were studied in relation to environmental variables describing temperature and water availability at four sites, covering a range in environmental conditions likely to be encountered in Slovenian beech forests. Minirhizotron images were used to determine fine root dynamics in a stand and gap in each of the sites for 12 periods during the 2007-2009 growing seasons. The environmental variables included air and soil temperatures, precipitation, forest floor precipitation, evapotranspiration and soil water contents. For data analysis, the daily mean values for each period for all variables were used. Fine root ingrowth and mortality were higher in the managed stand and gap compared to the old-growth stand and gap, but only significantly correlated with each other in the case of the managed stand. Forest floor precipitation and soil temperature were significant in explaining fine root ingrowth, whereas maximal evapotranspiration, soil temperature and soil water content were more important for fine root mortality. However, the correlations were weak and inconsistent among the four sites. By including site as predictor as well as environmental variables, R (2) values of 0.49 and 0.55 for ingrowth and mortality, respectively, were achieved. Despite this, the relationships between the fine root dynamics and selected environmental factors appeared relatively weak and complex, especially for fine root ingrowth and might be partially related also to differences in successional stages of the forests under study.
机译:研究了欧洲山毛榉(Fagus sylvatica L.)细根(直径<2 mm)的向内生长和死亡与环境变量的关系,这些变量描述了四个地点的温度和水利用率,涵盖了斯洛文尼亚山毛榉可能遇到的环境条件范围森林。在2007-2009年生长季节的12个时期中,使用了微型根部放疗的图像来确定每个站点的林分和间隙中的细根动态。环境变量包括空气和土壤温度,降水,林地降水,蒸散和土壤水分。为了进行数据分析,使用了所有变量在每个时期的每日平均值。受管理林分和间隙的细根向内生长和死亡率高于旧生长林分和间隙,但仅受管理林分彼此之间显着相关。森林地表降水和土壤温度在解释细根向内生长方面具有重要意义,而最大蒸散量,土壤温度和土壤含水量对细根死亡率更为重要。但是,这四个位置之间的相关性较弱且不一致。通过将站点作为预测变量以及环境变量,将向内生长和死亡率的R(2)值分别设置为0.49和0.55。尽管如此,细根动力学与选择的环境因素之间的关系显得相对较弱和复杂,尤其是对于细根向内生长,并且可能与所研究的森林演替阶段的差异部分相关。

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