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Microbial ecology in a future climate: effects of temperature and moisture on microbial communities of two boreal fens

机译:在未来的气候中微生物生态学:温度和水分对两个博芳香的微生物群落的影响

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摘要

Impacts of warming with open-top chambers on microbial communities in wet conditions and in conditions resulting from moderate water-level drawdown (WLD) were studied across 0-50 cm depth in northern and southern boreal sedge fens. Warming alone decreased microbial biomass especially in the northern fen. Impact of warming on microbial PLFA and fungal ITS composition was more obvious in the northern fen and linked to moisture regime and sample depth. Fungal-specific PLFA increased in the surface peat in the drier regime and decreased in layers below 10 cm in the wet regime after warming. OTUs representing Tomentella and Lactarius were observed in drier regime and Mortierella in wet regime after warming in the northern fen. The ectomycorrhizal fungi responded only to WLD. Interestingly, warming together with WLD decreased archaeal 16S rRNA copy numbers in general, and fungal ITS copy numbers in the northern fen. Expectedly, many results indicated that microbial response on warming may be linked to the moisture regime. Results indicated that microbial community in the northern fen representing Arctic soils would be more sensitive to environmental changes. The response to future climate change clearly may vary even within a habitat type, exemplified here by boreal sedge fen.
机译:使用南部北部和南部北部南部南部南部南部南部南部南方南部的0-50厘米深入了解湿润条件下和中度水平绘制(WLD)中的微生物群落和中等水平绘制(WLD)的条件下变暖的影响。单独加热下降微生物生物量,特别是在北部的北部。变暖对微生物PLFA和真菌的影响其组合物在北方北部更加明显,与湿度制度和样品深度相连。真菌特异性PLFA在干燥机构中的表面泥炭中增加,并且在湿化后,在湿地制度下在10厘米以下的层下降。在北方北部变暖后,在潮湿的政权中观察到代表Tomentella和Lactarius的Otus。 ectomycorrhizal真菌仅对WLD作出反应。有趣的是,与WLD一起变暖,将Archaeal 16s RRNA拷贝数减少,并真菌在北方北部的副本号。预期,许多结果表明对变暖的微生物反应可能与水分制度相关联。结果表明,代表北极土壤的北部的微生物群落对环境变化更敏感。即使在栖息地类型中,对未来气候变化的反应也可能有所不同,北方莎草队在此举例说明。

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