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Effects of wear and above ground forest site type characteristics on the soil microbial community structure in an urban setting

机译:城市环境中林地类型和地上植被类型特征对土壤微生物群落结构的影响

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We studied the effects of wear on the understorey vegetation and the soil microbial community structure (phospholipid fatty acid pattern) in urban forests of medium fertility and of varying size in the capital area of Finland, Helsinki. These forests are important sites of recreation for a large number of residents. Consequently, the cover of understorey vegetation is affected by trampling. In the study, the cover of ground layer plant species (mosses) was found to be lower than in rural reference areas. We found that microbial activity, measured as soil respiration, was lower in the most worn forest patches as compared to less worn sites. Further, the microbial community structure of the humus layer changed due to the effects of wear. By comparing the PLFA pattern in trampled and un-trampled forest patches, we found out that the most important factors affecting the structure of microbial community were the dominant tree species (the proportion of broad-leaved tree species in relation to conifers), and the composition of the understorey vegetation. Thus, we could conclude that wear affects the microbial community structure through changes in vegetation, in the quality of litter shed, and through resultant changes in the humus pH, rather than only through soil compaction.
机译:我们研究了磨损对芬兰首都赫尔辛基中等肥力和大小不等的城市森林下层植被和土壤微生物群落结构(磷脂脂肪酸格局)的影响。这些森林是许多居民休闲的重要场所。因此,践踏会影响底层植被的覆盖。在研究中,发现地表植物物种(苔藓)的覆盖率低于农村参考地区。我们发现,与最不易磨损的地区相比,最易磨损的森林地区的微生物活动(以土壤呼吸测量)较低。此外,由于磨损的作用,腐殖质层的微生物群落结构发生了变化。通过比较践踏和未踩踏的森林斑块的PLFA模式,我们发现影响微生物群落结构的最重要因素是优势树种(阔叶树种相对于针叶树的比例),以及底层植被的组成。因此,我们可以得出结论,磨损会通过植被的变化,垃圾棚的质量以及腐殖质pH的最终变化而影响微生物群落结构,而不仅是通过土壤压实。

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