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Strong in combination: Polyphasic approach enhances arguments for cold‐assigned cyanobacterial endemism

机译:雄厚的组合:多相方法增强了冷杉的蓝细菌性质的争论

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Cyanobacteria of biological soil crusts (BSCs) represent an important part of circumpolar and Alpine ecosystems, serve as indicators for ecological condition and climate change, and function as ecosystem engineers by soil stabilization or carbon and nitrogen input. The characterization of cyanobacteria from both polar regions remains extremely important to understand geographic distribution patterns and community compositions. This study is the first of its kind revealing the efficiency of combining denaturing gradient gel electrophoresis (DGGE), light microscopy and culture‐based 16S rRNA gene sequencing, applied to polar and Alpine cyanobacteria dominated BSCs. This study aimed to show the living proportion of cyanobacteria as an extension to previously published meta‐transcriptome data of the same study sites. Molecular fingerprints showed a distinct clustering of cyanobacterial communities with a close relationship between Arctic and Alpine populations, which differed from those found in Antarctica. Species richness and diversity supported these results, which were also confirmed by microscopic investigations of living cyanobacteria from the BSCs. Isolate‐based sequencing corroborated these trends as cold biome clades were assigned, which included a potentially new Arctic clade of Oculatella . Thus, our results contribute to the debate regarding biogeography of cyanobacteria of cold biomes.
机译:生物土壤地壳(BSC)的蓝藻代表了Circumpolar和Alpine生态系统的重要组成部分,作为生态状况和气候变化的指标,通过土壤稳定或碳和氮气输入作为生态系统工程师的功能。来自两个极地区域的蓝藻的表征仍然非常重要,以了解地理分布模式和群落组合物。本研究首先揭示了使变性梯度凝胶电泳(DGGE),基于光学显微镜和培养的16S rRNA基因测序组合的效率,其应用于极性和高山的蓝藻支配的BSC。本研究旨在向以前公布同一研究部位的先前公布的Meta转录组数据的延伸,将生物比例展示。分子指纹显示北极和高山种群之间具有密切关系的蓝藻群体的不同聚类,与南极洲发现的群体不同。物种丰富性和多样性支持这些结果,这些结果也通过来自BSC的生命紫脉的微观调查证实。作为分配冷生物群落的曲线的分离基础的测序证实了这些趋势,其中包括一个潜在的新北冰蛇肌肌。因此,我们的结果有助于对冷生物群体的Cyanobacteria生物地理造成的辩论。

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