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Investigating the Biodiversity of Microbial Communities in the McMurdo Dry Valleys, Antarctica: An Inter-Valley Comparison Study.

机译:调查南极麦克默多干旱谷的微生物群落的生物多样性:一项谷际比较研究。

摘要

Extreme environments provide a unique source of often highly adapted and tolerant organisms. Research on organisms in these habitats has led to the discovery of novel and useful compounds and may assist in understanding the impact of global change on biodiversity. The Dry Valleys of Eastern Antarctica are vast, ice-free regions believed to be the coldest, driest desert on Earth. Despite these harsh conditions, there is an increasing amount of evidence demonstrating that the soil ecosystems of the Dry Valleys sustain a wide diversity of microorganisms. The research presented is an inter-valley comparison study which aims to scrutinize microbial communities and environmental factors driving their distribution in the Dry Valleys. Automated ribosomal intergenic spacer analysis (ARISA) was used to provide a snapshot of bacterial and cyanobacterial communities living in the mineral sands in Miers Valley, Beacon Valley, Upper Wright Valley and at Battleship Promontory. Rigorous analysis of physico-chemical differences between the soils of these four valleys was undertaken in hope to understand the environmental parameters driving the distribution and biodiversity of microbial communities present. Multivariate statistical analysis and ordination of ARISA and physico-chemical data revealed that bacterial communities from each valley form distinctive clusters. Conversely, cyanobacterial communities showed less diversity and a more even distribution between valleys.
机译:极端环境提供了经常高度适应和耐受的有机体的独特来源。对这些栖息地中生物的研究导致发现了新颖有用的化合物,可能有助于了解全球变化对生物多样性的影响。南极东部的干旱谷是广阔的无冰区,被认为是地球上最冷,最干燥的沙漠。尽管条件恶劣,但越来越多的证据表明干旱谷的土壤生态系统具有多种多样的微生物。提出的研究是一项谷间比较研究,旨在仔细研究微生物群落和驱动其在干旱谷地分布的环境因素。自动化的核糖体基因间间隔物分析(ARISA)用于提供生活在米尔斯谷,信标谷,上赖特谷和战舰海角矿物砂中的细菌和蓝细菌群落的快照。对这四个山谷的土壤之间的理化差异进行了严格的分析,以期了解驱动当前微生物群落分布和生物多样性的环境参数。多元统计分析和对ARISA的排序以及理化数据表明,每个山谷中的细菌群落形成了独特的簇。相反,蓝细菌群落显示出较少的多样性,而山谷之间的分布更均匀。

著录项

  • 作者

    Barbier Béatrice A.;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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