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首页> 外文期刊>Applied and Environmental Microbiology >Novel Eukaryotic Lineages Inferred from Small-Subunit rRNA Analyses of Oxygen-Depleted Marine Environments
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Novel Eukaryotic Lineages Inferred from Small-Subunit rRNA Analyses of Oxygen-Depleted Marine Environments

机译:从缺氧海洋环境的小亚基rRNA分析推断出的新型真核生物谱系。

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Microeukaryotes in oxygen-depleted environments are among the most diverse, as well as the least studied, organisms. We conducted a cultivation-independent, small-subunit (SSU) rRNA-based survey of microeukaryotes in suboxic waters and anoxic sediments in the great Sippewisset salt marsh, Cape Cod, Mass. We generated two clone libraries and analyzed approximately 300 clones, which contained a large diversity of microeukaryotic SSU rRNA signatures. Only a few of these signatures were closely related (sequence similarity of >97%) to the sequences reported earlier. The bulk of our sequences represented deep novel branches within green algae, fungi, cercozoa, stramenopiles, alveolates, euglenozoa and unclassified flagellates. In addition, a significant number of detected rRNA sequences exhibited no affiliation to known organisms and sequences and thus represent novel lineages of the highest taxonomical order, most of them branching off the base of the global phylogenetic tree. This suggests that oxygen-depleted environments harbor diverse communities of novel organisms, which may provide an interesting window into the early evolution of eukaryotes.
机译:缺氧环境中的微真核生物是种类最多,研究最少的生物。我们对位于马萨诸塞州科德角Sippewisset盐沼的亚低氧水域和缺氧沉积物中的微真核生物进行了基于培养的小亚单位(SSU)rRNA的调查。我们生成了两个克隆文库并分析了约300个克隆,其中包含大量的微真核SSU rRNA签名。这些签名中只有少数与先前报道的序列密切相关(序列相似性> 97%)。我们的大部分序列代表了绿色藻类,真菌,小尾藻,stramenopiles,肺泡,桉属和未分类鞭毛的深新分支。此外,大量检测到的rRNA序列与已知生物和序列没有任何关联,因此代表了最高分类学顺序的新型谱系,其中大多数分支出了全局系统树的基础。这表明缺氧的环境中蕴藏着多种多样的新型生物,这可能为真核生物的早期进化提供了一个有趣的窗口。

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