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Possible interactions between bacterial diversity microbial activity and supraglacial hydrology of cryoconite holes in Svalbard

机译:斯瓦尔巴特群岛冰孔洞的细菌多样性微生物活性和冰上水文之间可能存在相互作用

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摘要

The diversity of highly active bacterial communities in cryoconite holes on three Arctic glaciers in Svalbard was investigated using terminal restriction fragment length polymorphism (T-RFLP) of the 16S rRNA locus. Construction and sequencing of clone libraries allowed several members of these communities to be identified, with Proteobacteria being the dominant one, followed by Cyanobacteria and Bacteroidetes. T-RFLP data revealed significantly different communities in holes on the (cold) valley glacier Austre Brøggerbreen relative to two adjacent (polythermal) valley glaciers, Midtre Lovénbreen and Vestre Brøggerbreen. These population compositions correlate with differences in organic matter content, temperature and the metabolic activity of microbial communities concerned. No within-glacier spatial patterns were observed in the communities identified over the 2-year period and with the 1 km-spaced sampling. We infer that surface hydrology is an important factor in the development of cryoconite bacterial communities.
机译:使用16S rRNA基因座的末端限制性片段长度多态性(T-RFLP),研究了斯瓦尔巴特群岛三个北极冰川的冰孔洞中高活性细菌群落的多样性。克隆文库的构建和测序可以鉴定出这些群落的几个成员,其中以变形杆菌为主导,其次是蓝细菌和拟杆菌。 T-RFLP数据显示,相对于两个相邻的(多热)山谷冰川MidtreLovénbreen和VestreBrøggerbreen,(冷)山谷冰川AustreBrøggerbreen的孔洞中存在明显不同的群落。这些种群组成与有关微生物群落的有机物含量,温度和代谢活性的差异相关。在两年的时间和以1千米的间隔采样的社区中,没有发现冰川内的空间格局。我们推断,地表水文学是冰冻土细菌群落发展的重要因素。

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