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首页> 外文期刊>Soil Biology & Biochemistry >Tree species-mediated spatial patchiness of the composition of microbial community and physicochemical properties in the topsoils of a tropical montane forest
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Tree species-mediated spatial patchiness of the composition of microbial community and physicochemical properties in the topsoils of a tropical montane forest

机译:树种介导的热带山地森林表层土壤微生物群落组成和理化特性的空间斑块

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摘要

To evaluate the importance of plant-soil feedbacks in forest ecosystems, it is fundamental to understand the spatial range within which plant species control soil physicochemical and microbial properties. We investigated the spatial pattern of soil properties associated with canopy trees in a tropical montane forest on Mt. Kianbalu, Borneo. We analyzed soil physicochemical properties and microbial communities (biomarker lipid abundance) as a function of soil depth and distance from the tree trunk of a conifer (Dacrydium gracilis) or a broadleaf tree (Lithocarpus clementianus). The concentration of condensed tannins and fungi-to-bacteria were higher beneath Dacrydium than beneath Lithocarpus. Furthermore, carbon-degrading enzyme activities were lower beneath Dacrydium. These effects of the tree species were more distinct on soil properties beneath the tree crown than on those outside the tree crown. These effects appeared to be largely due to differences in litter chemistry, and the distinct set of soil properties formed corresponding to the above canopy crown. In conclusion, the species-rich forest on the tropical mountain contains spatially distinct units of soil properties associated with canopy trees, and this spatial pattern can influence ecosystem dynamics in the forest through plant-soil feedback effects.
机译:为了评估植物-土壤反馈在森林生态系统中的重要性,了解植物物种控制土壤理化和微生物特性的空间范围至关重要。我们调查了山上热带山地森林中冠层树相关的土壤特性的空间格局。婆罗洲坎巴鲁。我们分析了土壤理化性质和微生物群落(生物标记脂质丰度)随土壤深度和距针叶树(Dacrydium gracilis)或阔叶树(Lithocarpus clementianus)树干距离的函数。在Dacrydium下的浓缩单宁和真菌-细菌的浓度高于在Licarpcarpus下的浓度。此外,碳降解酶的活性低于Dacrydium。树种的这些影响对树冠下的土壤特性的影响比对树冠外的土壤特性的影响更大。这些影响似乎主要归因于凋落物化学的差异,并且形成了与上述冠层冠层相对应的独特的土壤特性集。总之,热带山区物种丰富的森林包含与冠层树相关的土壤特性的空间不同单元,并且这种空间格局可以通过植物-土壤反馈效应影响森林中的生态系统动态。

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