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Antarctic Dronning Maud Land (Schirmacher Oasis) using amplicon pyrosequencing

机译:使用扩增子焦磷酸测序的南极Daudning Maud土地(Schirmacher绿洲)

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摘要

The Schimacher Oasis, an ice-free plateau in East Antarctic Dronning Maud Land, consists of over 120 freshwater lakes. These lakes are connected largely through four major surface channels. The bacterial diversity in these lake ecosystems remains largely unexplored. In this study, we compared the bacterial diversity in five freshwater lakes (L42, L46, L47, L50, and L51) interconnected by two surface channels using bacterial tag-encoded FLX amplicon pyrosequencing (bTEFAP) method. We further compared the resultant bacterial composition from these five lakes with another freshwater lake in the Schirmacher Oasis, Lake Tawani(P), which is not connected through the same surface channels. Using bTEFAP, we differentiated nine different phyla with the phyla Proteobacteria (especially the class Al-phaproteobacteria) and Bacteroidetes (the class Sphingobac-teria) dominating in lakes interconnected by surface channel 1, while the phyla Chloroflexi and Firmicutes were highly abundant in lakes interconnected by surface channel 2. The operational taxonomic unit (OTU) network and Principle Coordinate Analysis (PCoA) plot based on unweighted UNIFRAC determined that the bacterial assemblages found in these five lakes are different than the bacterial composition residing in Lake Tawani(P). The distribution and the diversity of the bacterial communities in Schirmacher Oasis freshwater lakes that are connected through surface channels may provide an insight into the role of the extreme physico-chemical parameters that help shape microbially driven functional ecosystems in other oases on this icy continent.
机译:Schimacher Oasis是南极东德罗宁莫德土地上的一个无冰高原,由120多个淡水湖泊组​​成。这些湖泊主要通过四个主要的地面通道相连。这些湖泊生态系统中的细菌多样性在很大程度上尚未得到开发。在这项研究中,我们使用细菌标签编码的FLX扩增子焦磷酸测序(bTEFAP)方法,比较了通过两个表面通道相互连接的五个淡水湖(L42,L46,L47,L50和L51)中的细菌多样性。我们进一步比较了这五个湖中的细菌组成与在Schirmacher Oasis的另一个淡水湖Tawani(P)中的细菌组成,后者没有通过相同的地表通道连接。使用bTEFAP,我们区分了9种不同的门,其中门上的Proteobacteria(尤其是Al-phaproteobacteria类)和Bacteroidetes(Sphingobac-teria类)在通过表面通道1互连的湖泊中占优势,而Chloroflexi和Firmicutes的门在互连的湖泊中高度丰富通过表面通道2。基于未加权UNIFRAC的操作分类单位(OTU)网络和原理坐标分析(PCoA)图确定,在这五个湖中发现的细菌集合与塔瓦尼湖(P)中的细菌组成不同。通过地表通道相连的席尔马赫-绿洲淡水湖中细菌群落的分布和多样性,可能有助于洞察极端物理化学参数的作用,这些参数有助于塑造这个冰冷大陆上其他绿洲中微生物驱动的功能生态系统。

著录项

  • 来源
    《Polar biology》 |2014年第3期|359-366|共8页
  • 作者单位

    Department of Biology, University of Alabama at Birmingham, 1300 University Blvd., CH464, Birmingham, AL 35294-1170, USA;

    Polar Studies Division, NH-5P, NIT, Geological Survey of India, Faridabad, Haryana 121001, India;

    Polar Studies Division, NH-5P, NIT, Geological Survey of India, Faridabad, Haryana 121001, India;

    Department of Biology, University of Alabama at Birmingham, 1300 University Blvd., CH464, Birmingham, AL 35294-1170, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antarctic freshwater lakes; Biodiversity; Qiime; 16S rRNA; Lake Tawani(P); Heterotrophs;

    机译:南极淡水湖泊;生物多样性;Qiime;16S rRNA;塔瓦尼湖(P);异养菌;

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