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Cyanobacterial Diversity in Natural and Artificial Microbial Mats of Lake Fryxell (McMurdo Dry Valleys Antarctica): a Morphological and Molecular Approach

机译:弗莱克塞尔湖(南极麦克默多干旱谷)天然和人工微生物垫中的蓝细菌多样性:一种形态学和分子学方法

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摘要

Currently, there is no consensus concerning the geographic distribution and extent of endemism in Antarctic cyanobacteria. In this paper we describe the phenotypic and genotypic diversity of cyanobacteria in a field microbial mat sample from Lake Fryxell and in an artificial cold-adapted sample cultured in a benthic gradient chamber (BGC) by using an inoculum from the same mat. Light microscopy and molecular tools, including 16S rRNA gene clone libraries, denaturing gradient gel electrophoresis, and sequencing, were used. For the first time in the study of cyanobacterial diversity of environmental samples, internal transcribed spacer (ITS) sequences were retrieved and analyzed to complement the information obtained from the 16S rRNA gene. Microscopy allowed eight morphotypes to be identified, only one of which is likely to be an Antarctic endemic morphotype. Molecular analysis, however, revealed an entirely different pattern. A much higher number of phylotypes (15 phylotypes) was found, but no sequences from Nodularia and Hydrocoryne, as observed by microscopy, were retrieved. The 16S rRNA gene sequences determined in this study were distributed in 11 phylogenetic lineages, 3 of which were exclusively Antarctic and 2 of which were novel. Collectively, these Antarctic sequences together with all the other polar sequences were distributed in 22 lineages, 9 of which were exclusively Antarctic, including the 2 novel lineages observed in this study. The cultured BGC mat had lower diversity than the field mat. However, the two samples shared three morphotypes and three phylotypes. Moreover, the BGC mat allowed enrichment of one additional phylotype. ITS sequence analysis revealed a complex signal that was difficult to interpret. Finally, this study provided evidence of molecular diversity of cyanobacteria in Antarctica that is much greater than the diversity currently known based on traditional microscopic analysis. Furthermore, Antarctic endemic species were more abundant than was estimated on the basis of morphological features. Decisive arguments concerning the global geographic distribution of cyanobacteria should therefore incorporate data obtained with the molecular tools described here.
机译:目前,关于南极蓝细菌的地理分布和特有程度尚无共识。在本文中,我们描述了来自Fryxell湖的田间微生物垫样品以及通过使用来自同一垫的接种物在底栖梯度室(BGC)中培养的人工冷适应样品中的蓝细菌的表型和基因型多样性。使用了光学显微镜和分子工具,包括16S rRNA基因克隆文库,变性梯度凝胶电泳和测序。在环境样品的蓝细菌多样性研究中,首次提取并分析了内部转录间隔区(ITS)序列,以补充从16S rRNA基因获得的信息。显微镜检查可以鉴定八种形态,其中只有一种可能是南极地方性形态。然而,分子分析揭示了完全不同的模式。发现了更高数量的系统型(15种系统型),但是如通过显微镜观察到的,没有检索到来自结节菌属和水皮质激素的序列。在这项研究中确定的16S rRNA基因序列分布在11个系统发育谱系中,其中3个是南极唯一的,而2个是新颖的。这些南极序列与所有其他极地序列共同分布在22个谱系中,其中9个仅是南极,包括在本研究中观察到的2个新谱系。培养的BGC垫比田间垫低。但是,两个样品共有三种形态型和三种系统型。此外,BGC垫允许丰富另一种系统型。 ITS序列分析显示了一个难以解释的复杂信号。最后,这项研究提供了南极蓝藻分子多样性的证据,该分子多样性远大于基于传统显微镜分析目前已知的多样性。此外,南极特有物种比根据形态特征估计的丰富得多。因此,关于蓝细菌的全球地理分布的决定性论点应纳入使用此处描述的分子工具获得的数据。

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