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首页> 外文期刊>Soil Biology & Biochemistry >Altitude and decomposition stage rather than litter origin structure soil microarthropod communities in tropical montane rainforests
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Altitude and decomposition stage rather than litter origin structure soil microarthropod communities in tropical montane rainforests

机译:海拔和分解阶段而不是热带山地雨林中的垃圾原产地结构土壤微子道社区

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Microarthropods impact organic matter turnover and nutrient cycling via processing of organic matter entering the soil as litter and root exudates. Variations in the structure of soil microarthropod communities are due to both biotic and abiotic factors such as local climatic conditions and litter quality. However, in particular in tropical ecosystems the relative importance of these factors for structuring soil microarthropod communities are little understood. We investigated variations in the structure of soil microarthropod communities in leaf and root litter from three altitudes exposed in three tropical montane rainforests at different altitude in southern Ecuador for three years. Leaf litter from three abundant tree species and roots of different diameter were collected from three sites at different altitude (ca. 1000, 2000, 3000 m). Litter and roots were placed in litterbags at the three altitudes, and after 6, 12, 24 and 36 months soil microarthropods in the litterbags were analysed. Density of Acari and Collembola, and diversity of Oribatida decreased with increasing altitude and varied with the degree the litter was decomposed rather than with litter origin and therefore quality of the litter material. Densities fluctuated during litter decomposition generally being lowest after 24 months but higher after 36 months. Species composition of Oribatida varied strongly with altitude; only few species overlapped between altitudes. The percentage of parthenogenetic Oribatida species decreased with increasing altitude. The results suggest that the origin and therefore quality of litter material is of little importance as driving factor for the composition of microarthropod communities of tropical montane rainforests. Factors changing between rainforest sites at different altitude, as well as decomposition stage of litter and associated changes in the microbial community are much more important.
机译:通过加工土壤的有机物质作为垃圾和根部渗出物,通过加工有机物质撞击有机物质周转和营养循环。土壤微征社区结构的变化是由于生物和非生物因素,如局部气候条件和垃圾质量。然而,特别是在热带生态系统中,这些因素用于构建土壤微征社区的这些因素的重要性很少。我们在南部厄瓜多尔不同海拔三年内暴露的三个高度暴露的三个海拔三年来研究叶片和根垃圾的土壤微型灌木丛结构的变化。从三个丰富的树种和不同直径的根部的叶子从不同高度的三个地点收集(约1000,2000,3000米)。将垃圾和根部置于三个高度的垃圾袋中,并在6,12,24和36个月后分析了隐式的土壤微征性。 Acari和Collembola的密度,并且oribatida的多样性随着高度的增加而降低,并且随着垃圾分解而不是用垃圾来源而变化,因此垫料材料的质量。密度在凋落物分解过程中波动通常在24个月后最低,但在36个月后更高。 oribatida的物种组成用高度而变化;只有很少的物种重叠在高度之间。随着海拔高度的增加,单位生殖oribatida物种的百分比减少。结果表明,垃圾材料的起源和垃圾材料的质量与热带蒙太金雨林的微型接收社区组成的驱动因素重视。在不同高度的雨林网站之间改变的因素,以及微生物群落的垃圾和相关变化的分解阶段更为重要。

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