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首页> 外文期刊>Microbial Ecology: An International Journal >Soil Parameters Drive the Structure, Diversity and Metabolic Potentials of the Bacterial Communities Across Temperate Beech Forest Soil Sequences
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Soil Parameters Drive the Structure, Diversity and Metabolic Potentials of the Bacterial Communities Across Temperate Beech Forest Soil Sequences

机译:土壤参数驱动温带山毛榉森林土壤序列中细菌群落的结构,多样性和代谢潜能

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Soil and climatic conditions as well as land cover and land management have been shown to strongly impact the structure and diversity of the soil bacterial communities. Here, we addressed under a same land cover the potential effect of the edaphic parameters on the soil bacterial communities, excluding potential confounding factors as climate. To do this, we characterized two natural soil sequences occurring in the Montiers experimental site. Spatially distant soil samples were collected below Fagus sylvatica tree stands to assess the effect of soil sequences on the edaphic parameters, as well as the structure and diversity of the bacterial communities. Soil analyses revealed that the two soil sequences were characterized by higher pH and calcium and magnesium contents in the lower plots. Metabolic assays based on Biolog Ecoplates highlighted higher intensity and richness in usable carbon substrates in the lower plots than in the middle and upper plots, although no significant differences occurred in the abundance of bacterial and fungal communities along the soil sequences as assessed using quantitative PCR. Pyrosequencing analysis of 16S ribosomal RNA (rRNA) gene amplicons revealed that Proteobacteria, Acidobacteria and Bacteroidetes were the most abundantly represented phyla. Acidobacteria, Proteobacteria and Chlamydiae were significantly enriched in the most acidic and nutrient-poor soils compared to the Bacteroidetes, which were significantly enriched in the soils presenting the higher pH and nutrient contents. Interestingly, aluminium, nitrogen, calcium, nutrient availability and pH appeared to be the best predictors of the bacterial community structures along the soil sequences.
机译:事实证明,土壤和气候条件以及土地覆盖和土地管理会严重影响土壤细菌群落的结构和多样性。在这里,我们解决了在同一土地覆盖下,edaphic参数对土壤细菌群落的潜在影响,但不包括气候等潜在混杂因素。为此,我们对出现在Montiers实验地点的两种天然土壤序列进行了特征分析。收集了在草地青冈林下的空间遥远的土壤样品,以评估土壤序列对水生参数的影响以及细菌群落的结构和多样性。土壤分析表明,这两个土壤序列的特征是在较低的样地中具有较高的pH值以及钙和镁含量。基于Biolog Ecoplates的代谢测定法突出显示了较低地块中可用碳底物的强度和富集度高于中部和上部地块,尽管沿土壤序列的细菌和真菌群落的丰度没有明显差异,如使用定量PCR评估的那样。 16S核糖体RNA(rRNA)基因扩增子的焦磷酸测序分析表明,变形杆菌,酸性杆菌和拟杆菌是最丰富的菌群。酸性细菌,变形杆菌和衣原体在酸性和营养最贫乏的土壤中明显富集,而拟杆菌属则在pH和营养成分更高的土壤中明显富集。有趣的是,铝,氮,钙,养分的有效性和pH值似乎是沿土壤序列细菌群落结构的最佳预测指标。

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