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Soil microbial functional activity is governed by a combination of tree species composition and soil properties in temperate forests

机译:温带森林中树木的微生物组成和土壤性质共同决定着土壤微生物的功能活性

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Soil microbial community function is influenced, among other factors, by the chemical composition of C substrates, which in turn is dependent on the overlying tree species and the soil environmental conditions. The aim of this study was to examine how different dominant forest species and soil properties are related to soil microbial community level physiological profiles (CLPPs) in temperate forests. Forest floor properties and physico-chemical properties of the topsoil (0-30 cm) and the subsoil (30-60 cm) were studied in National Forest Inventory (NFI) plots differing in the dominant tree species (Quercus robur L., Fagus sylvatica L., Quercus ilex L. and Pinus radiata D. Don) but affected by similar climatic conditions. Soil microbial functional activity was assessed by the MicroResp analytical system. The only forest floor properties that differed significantly under different tree species were the concentrations of Ca, Mg and K. The forest floor of oak plots was characterized by higher concentrations of Mg and K, and the forest floor in holm oak plots by higher concentrations of Ca than in the other stands. Holm oak plots were also characterized by significantly higher concentrations of topsoil organic matter, nitrogen, phosphorus and potassium than beech, oak and pine, as well as a higher cation exchange capacity. Substrate C respiration was always higher for carboxylic acids than other substrates and the activity of soil microbial communities was higher under beech and holm oak than under oak and pine. The Mantel partial test and forward stepwise regression revealed that the soil microbial activity in the topsoil was mainly related to the topsoil N concentration. Most of the variation in CLPP in the subsoil was related to the concentration of Ca and pH in the subsoil. In conclusion, the soil microbial functional activity was related to both forest species and soil properties (C) 2015 Elsevier B.V. All rights reserved.
机译:除其他因素外,土壤微生物群落功能受碳基质的化学成分的影响,而碳基质的化学成分又取决于上覆的树种和土壤环境条件。这项研究的目的是研究温带森林中不同的优势林物种和土壤特性如何与土壤微生物群落水平的生理特征(CLPPs)相关。在国家森林清单(NFI)地块中研究了主要树种(栎木,水青冈)的表层土壤(0-30 cm)和下层土壤(30-60 cm)的林地特性和理化特性L.,Quercus ilex L.和Pinus radiata D. Don),但受到类似气候条件的影响。土壤微生物功能活性通过MicroResp分析系统进行了评估。在不同树种下,唯一的林地特性是Ca,Mg和K的浓度存在显着差异。橡木样地的林地的特征在于较高的Mg和K浓度,而圣栎地块的林地的特征在于较高的浓度。钙比其他立场。霍尔姆橡木样地的特征还在于,表土的有机质,氮,磷和钾的浓度明显高于山毛榉,橡木和松木,以及更高的阳离子交换能力。羧酸的底物C呼吸总是比其他底物高,并且在山毛榉和oak栎下,土壤微生物群落的活性高于在橡木和松树下。芒特尔局部测试和逐步逐步回归分析表明,表土中土壤微生物活性主要与表土氮含量有关。土壤中CLPP的大部分变化与土壤中Ca的浓度和pH值有关。总之,土壤微生物功能活性与森林物种和土壤特性都有关系(C)2015 Elsevier B.V.保留所有权利。

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