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Changes of the soil ecosystem along a receding glacier: Testing the correlation between environmental factors and bacterial community structure

机译:冰川后退时土壤生态系统的变化:测试环境因素与细菌群落结构之间的相关性

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As a glacier retreats, it leaves behind it a forefield that has a natural gradient of soil formation age. We systematically sampled the Damma glacier forefield (Switzerland) along a temporal gradient of soils deglaciated between 1956 and 2002. A significant change in organic carbon content, sulfate concentration, pH, water and nucleic acid content was observed along the forefield chronosequence. Based on 16S rRNA gene based fingerprinting, the structure of the bacterial community also shifted along the forefield. Shifts in the structure of the bacterial community were significantly correlated to changes of pH, soil water content and soil age. To test the impacts of an array of environmental variables including soil age, soil water content, and different anions on the structure of the bacterial community we incubated different glacier forefield soils under specific treatment conditions for 30 days at 25 pC. The incubation of recently deglaciated soils resulted into an increase of bacteria from the family Methylocystaceae and from the class Betaproteobacteria while the community composition from matured soil changed to a lesser extent. The total nitrogen concentration in matured soil doubled during incubation, whereas the nitrogen concentrations in recently deglaciated soil stayed constant. This suggested that the microbial ecosystem functioned differently in the mature versus the recently deglaciated soils. Only soil age and soil water content could be singled out as having significant effects on the structure and composition of the bacterial community, despite the fact that bacterial communities in glacier forefields are exposed to other steep environmental gradients.
机译:当冰川退缩时,它留下的前场具有土壤形成年龄的自然梯度。我们沿着1956年至2002年间冰川消融的土壤的时间梯度系统地采样了Damma冰川前场(瑞士)。沿前场的时间序列观察到有机碳含量,硫酸盐浓度,pH,水和核酸含量发生了显着变化。基于16S rRNA基因的指纹图谱,细菌群落的结构也沿前场移动。细菌群落结构的变化与pH,土壤含水量和土壤年龄的变化显着相关。为了测试一系列环境变量(包括土壤年龄,土壤含水量和不同阴离子)对细菌群落结构的影响,我们在特定处理条件下将不同的冰川前田土壤在25 pC下孵育30天。最近冰层土壤的温育导致来自甲基囊藻科和Betaproteobacteria类的细菌增加,而来自成熟土壤的群落组成变化程度较小。在孵化过程中,成熟土壤中的总氮浓度增加了一倍,而最近冰层土壤中的氮浓度保持恒定。这表明,微生物生态系统在成熟土壤和最近冰川消融的土壤中的功能有所不同。尽管事实上冰川前场中的细菌群落暴露于其他陡峭的环境梯度,但只有土壤年龄和土壤含水量才能对细菌群落的结构和组成产生重大影响。

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