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Response of Archaeal Community Structure to Environmental Changes in Lakes on the Tibetan Plateau, Northwestern China

机译:青藏高原湖泊古细菌群落结构对环境变化的响应

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摘要

To study how archaeal community responds to environmental changes, we investigated archaeal community structures in waters of three Tibetan saline lakes in northwestern China (Gahai, Xiaochaidan, and Charhan Lakes) with 16S rRNA gene phylogenetic analysis. Temperature, pH, and water chemistry (major anions and cations) of the lakes were measured. Three archaeal clone libraries were constructed with a total of 297 sequences. Incorporating our previous data obtained from other lakes on the Tibetan Plateau, we performed statistical analyses to identify dominant environmental parameters that could account for the observed variations in archaeal community structure. We concluded that salinity and water chemistry (Na and bicarbonate concentration in particular) played an important role in shaping archaeal community. In particular, the relative abundance of archaeal 16S rRNA genes affiliated with the Halobacteriales of the Euryarchaeota increased with salinity, whereas that of crenarchaeotal 16S rRNA gene sequences showed the opposite trend. Crenarchaeotal 16S rRNA gene sequences were retrieved from lake waters with salinity up to 28.3%. These results have important implications for our understanding of response of archaeal community to environmental changes in high-altitude lake ecosystems.
机译:为了研究古细菌群落对环境变化的响应,我们利用16S rRNA基因系统发育分析调查了中国西北部三个藏族盐湖(嘎海,小柴旦和查罕湖)水域的古细菌群落结构。测量了湖泊的温度,pH值和水化学(主要的阴离子和阳离子)。构建了三个古细菌克隆文库,共有297个序列。结合我们从青藏高原其他湖泊获得的先前数据,我们进行了统计分析,以确定可以解释观察到的古细菌群落结构变化的主要环境参数。我们得出的结论是,盐度和水化学(尤其是Na和碳酸氢盐的浓度)在塑造古细菌群落中起着重要作用。特别是,与古细菌的嗜盐菌有关的古细菌16S rRNA基因的相对丰度随着盐度的增加而增加,而crenarchaeotal 16S rRNA基因序列的相对丰度却呈现相反的趋势。从盐湖中回收了含盐的16S rRNA基因序列,盐度高达28.3%。这些结果对我们理解古细菌群落对高海拔湖泊生态系统环境变化的反应具有重要意义。

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