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首页> 外文期刊>Molecular phylogenetics and evolution >Molecular phylogeny of euglyphid testate amoebae (Cercozoa: Euglyphida) suggests transitions between marine supralittoral and freshwater/terrestrial environments are infrequent
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Molecular phylogeny of euglyphid testate amoebae (Cercozoa: Euglyphida) suggests transitions between marine supralittoral and freshwater/terrestrial environments are infrequent

机译:桉树的睾丸变形虫的分子系统发育(Cercozoa:Euglyphida)表明,海洋上滨与淡水/陆地环境之间的转换很少

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摘要

Marine and freshwater ecosystems are fundamentally different regarding many biotic and abiotic factors. The physiological adaptations required for an organism to pass the salinity barrier are considerable. Many eukaryotic lineages are restricted to either freshwater or marine environments. Molecular phylogenetic analyses generally demonstrate that freshwater species and marine species segregate into different sub-clades, indicating that transitions between these two environments occur only rarely in the course of evolution. It is, however, unclear if the transitions between freshwater and environments characterized by highly variable salinities, such as the marine supralittoral zone, are also infrequent. Here, we use testate amoebae within the Euglyphida to assess the phylogenetic interrelationships between marine supralittoral and freshwater taxa. Euglyphid testate amoebae are mainly present in freshwater habitats but also occur in marine supralittoral environments. Accordingly, we generated and analyzed partial SSU rRNA gene sequences from 49 new marine/supralittoral and freshwater Cyphoderiidae sequences, 20 sequences of the Paulinellidae, Trinematidae, Assulinidae, and Euglyphidae families as well as 21 GenBank sequences of unidentified taxa derived from environmental PCR surveys. Both the molecular and morphological data suggest that the diversity of Cyphoderiidae is strongly underestimated. The results of our phylogenetic analyses demonstrated that marine supralittoral and freshwater euglyphid testate amoeba species are segregated into distinct sub-clades, suggesting that transitions between these two habitats occurred only infrequently.
机译:就许多生物和非生物因素而言,海洋和淡水生态系统根本不同。有机体通过盐分屏障所需的生理适应性是相当大的。许多真核细胞系仅限于淡水或海洋环境。分子系统发育分析通常表明,淡水物种和海洋物种分隔为不同的子进化枝,表明这两种环境之间的过渡仅在进化过程中很少发生。但是,尚不清楚淡水与盐度变化很大的环境(如海洋滨海带)之间的过渡是否也很少发生。在这里,我们使用桉树纲内的睾丸变形虫来评估海洋滨水区和淡水生物群之间的系统发育相互关系。纲形纲虫的变形虫主要存在于淡水生境中,但也存在于海洋滨海环境中。因此,我们从49个新的海洋/滨海和淡水拟蝇科序列,Paulinellidae,Trinematidae,Assulinidae和Euglyphidae家族的20个序列以及来自环境PCR调查的21个GenBank序列中生成并分析了SSU rRNA基因的部分序列。分子和形态学数据均表明,Cyphoderiidae的多样性被大大低估了。我们的系统发育分析结果表明,海洋上滨和淡水桉树的睾丸变形虫被分为不同的亚分支,这表明这两个生境之间的过渡很少发生。

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