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Responses of aerobic microbial communities and soil respiration to water-level drawdown in a northern boreal fen

机译:北方北方地区有氧微生物群落和土壤呼吸对水位下降的响应

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On a global basis, peatlands are a major reserve of carbon (C). Hydrological changes can affect the decomposition processes in peatlands and in turn can alter their C balance. Since 1959, a groundwater extraction plant has generated a water-level gradient at our study site that has gradually changed part of the wet fen into a dry peatland forest. The average water-level drawdown of the gradient (from a pristine 9 cm to 26 cm in the dry end) is close to an estimate predicted by an increase in mean global temperature of 3 degrees C. We studied the total microbial community of the aerobic surface peat in four locations along the gradient through phospholipid fatty acid and PCR-DGGE methods. Additionally, field measurements of soil respiration showed a threefold increase in the C-emission rate at the driest location compared with the wettest one, indicating enhanced decomposition. Also, both fungal and bacterial biomass increased in the drier locations. At the species level, the fungal community changed due to water-level drawdown whereas actinobacteria were less sensitive to drying. The majority of fungal sequences were similar to ectomycorrhizal (ECM) fungi, which dominated throughout the gradient. Our results indicate that ECM fungi might act as important facultative decomposers in organic-rich environments such as peatlands.
机译:在全球范围内,泥炭地是主要的碳储量(C)。水文变化会影响泥炭地的分解过程,进而改变其碳平衡。自1959年以来,一个地下水提取厂在我们的研究地点产生了水位梯度,该梯度逐渐将湿的一部分变成了泥炭地干燥森林。梯度的平均水位下降(从原始的9 cm到干端的26 cm)接近于平均全球气温升高3摄氏度所预测的估计值。我们研究了好氧菌的总微生物群落通过磷脂脂肪酸和PCR-DGGE方法在沿梯度的四个位置分布表面泥炭。此外,对土壤呼吸的野外测量表明,与最湿润的土壤相比,最干燥处的碳排放速率增加了三倍,表明分解作用增强。同样,在干燥的地方真菌和细菌的生物量都增加了。在物种一级,真菌群落由于水位下降而改变,而放线菌对干燥较不敏感。大多数真菌序列与外生菌根(ECM)真菌相似,在整个梯度过程中占主导地位。我们的结果表明,ECM真菌可能在泥炭地等富含有机物的环境中充当重要的兼性分解剂。

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