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Differences in the activity and bacterial community structure of drained grassland and forest peat soils

机译:流失的草地和森林泥炭土壤活性和细菌群落结构的差异

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The microbial activity and bacterial community structure were investigated in two types of peat soil in a temperate marsh. The first, a drained grassland fen soil, has a neutral pH with partially degraded peat in the upper oxic soil horizons (16% soil organic carbon). The second, a bog soil, was sampled in a swampy forest and has a very high soil organic carbon content (45%), a low pH (4.5), and has occasional anoxic conditions in the upper soil horizons due to the high water table level. The microbial activity in the two soils was measured as the basal and substrate-induced respiration (SIR). Unexpectedly, the SIR (ol CO2 g-1 dry soil) was higher in the bog than in the fen soil, but lower when CO2 production was expressed per volume of soil. This may be explained by the notable difference in the bulk densities of the two soils. The bacterial communities were assessed by terminal restriction fragment length polymorphism (T-RFLP) profiling of 16S rRNA genes and indicated differences between the two soils. The differences were determined by the soil characteristics rather than the season in which the soil was sampled. The 16S rRNA gene libraries, constructed from the two soils, revealed high proportions of sequences assigned to the Acidobacteria phylum. Each library contained a distinct set of phylogenetic subgroups of this important group of bacteria.
机译:在温带沼泽的两种泥炭土壤中研究了微生物活性和细菌群落结构。第一种是排水的草土壤,其pH为中性,在高含氧土壤层中的泥炭部分降解(土壤有机碳含量为16%)。第二种是沼泽土壤,是在沼泽森林中取样的,土壤有机碳含量很高(45%),pH值很低(4.5),并且由于地下水位高而偶尔在上部土壤层缺氧水平。测量两种土壤中的微生物活性,作为基础呼吸和底物诱导的呼吸(SIR)。出乎意料的是,沼泽中的SIR(ol CO2 g-1干燥土壤)要比the土壤高,但是当以每体积土壤表达CO2产生时,SIR会降低。这可以用两种土壤的堆积密度的显着差异来解释。通过16S rRNA基因的末端限制性片段长度多态性(T-RFLP)分析来评估细菌群落,并指出两种土壤之间的差异。差异是由土壤特征而不是土壤取样的季节决定的。从两种土壤中构建的16S rRNA基因文库揭示了分配给门酸杆菌的序列的比例很高。每个文库都包含这一重要细菌群的不同系统发育亚组。

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