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Phylogenetic and Ecological Analysis of Novel Marine Stramenopiles

机译:新型海洋海藻的系统发育和生态学分析

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摘要

Culture-independent molecular analyses of open-sea microorganisms have revealed the existence and apparent abundance of novel eukaryotic lineages, opening new avenues for phylogenetic, evolutionary, and ecological research. Novel marine stramenopiles, identified by 18S ribosomal DNA sequences within the basal part of the stramenopile radiation but unrelated to any previously known group, constituted one of the most important novel lineages in these open-sea samples. Here we carry out a comparative analysis of novel stramenopiles, including new sequences from coastal genetic libraries presented here and sequences from recent reports from the open ocean and marine anoxic sites. Novel stramenopiles were found in all major habitats, generally accounting for a significant proportion of clones in genetic libraries. Phylogenetic analyses indicated the existence of 12 independent clusters. Some of these were restricted to anoxic or deep-sea environments, but the majority were typical components of coastal and open-sea waters. We specifically identified four clusters that were well represented in most marine surface waters (together they accounted for 74% of the novel stramenopile clones) and are the obvious targets for future research. Many sequences were retrieved from geographically distant regions, indicating that some organisms were cosmopolitan. Our study expands our knowledge on the phylogenetic diversity and distribution of novel marine stramenopiles and confirms that they are fundamental members of the marine eukaryotic picoplankton.
机译:不依赖培养物的海洋微生物分子分析揭示了新型真核生物谱系的存在和明显丰富,为系统发育,进化和生态学研究开辟了新途径。新型海洋Stramenopiles,由在Stramenopile辐射的基部内的18S核糖体DNA序列鉴定出,但与任何先前已知的群无关,构成了这些远洋样本中最重要的新型谱系之一。在这里,我们对新型Stramenopiles进行了比较分析,包括来自此处提出的沿海遗传文库的新序列以及来自公开海洋和海洋缺氧场所的最新报告的序列。在所有主要生境中都发现了新的stramenopiles,通常占基因库中克隆的很大一部分。系统发育分析表明存在12个独立的群集。其中一些仅限于缺氧或深海环境,但大多数是沿海和公海的典型组成部分。我们特别确定了在大多数海洋表层水域中代表性良好的四个星团(它们合起来占新型stramenopile克隆的74%),并且是未来研究的明显目标。从地理上遥远的地区检索到许多序列,表明某些生物是世界性的。我们的研究拓宽了我们对新型海洋斯特拉门虫的系统发育多样性和分布的认识,并证实它们是海洋真核微微浮游生物的基本成员。

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