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Phylogenetic analysis of lineage relationships among hyperiid amphipods as revealed by examination of the mitochondrial gene, cytochrome oxidase I (COI)

机译:通过检查线粒体基因细胞色素氧化酶I(COI),揭示了双节肢动物两栖动物之间谱系关系的系统发育分析

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摘要

Among metazoans, crustaceans display the greatest disparity between body plans and are second only to the insects in overall species diversity. Within the crustaceans, the Amphipoda rank as one of the most speciose extant orders. Amphipods have successfully invaded a variety of ecosystems, including the pelagic midwater environment. Despite their abundance in varied and dissimilar habitats, and the use of traditional morphological and systematic comparative analyses, phylogenetic relationships amongamphipods remain uncertain. The pelagic amphipods, hyperiids, have highly divergent life histories and morphological attributes in comparison to more familiar benthic, nearshore, intertidal, and terrestrial amphipods. Some of these adaptations are likelycorrelated with their pelagic life history and include features such as hypertrophied olfactory and visual systems, duplications of the eyes, and an array of modifications to the appendages. Many of these morphological features may represent homoplasies, thus masking the true phylogenetic relationships among extant hyperiid amphipods. Here, we sample a wide range of amphipod taxa for the COI gene and present the first preliminary molecular phylogeny among the hyperiids.
机译:在后生动物中,甲壳类动物在人体计划之间显示出最大的差异,并且在整个物种多样性中仅次于昆虫。在甲壳类动物中,两栖动物是现存最特殊的动物之一。两栖动物已成功侵入包括中上层水域环境在内的各种生态系统。尽管它们在不同和不同的生境中丰富,并且使用传统的形态学和系统的比较分析,但两栖动物之间的系统发育关系仍然不确定。与更熟悉的底栖,近岸,潮间带和陆地的两栖类动物相比,远洋的两栖类动物的生活史和形态特征高度不同。这些适应中的某些可能与它们的中上层生活史相关,并且包括诸如肥厚的嗅觉和视觉系统,眼睛重复以及对附件的一系列修饰等特征。这些形态特征中的许多可能代表同质体,因此掩盖了现存的双节肢动物两足纲之间的真正系统发育关系。在这里,我们对COI基因的两栖类分类群进行了采样,并提出了双曲线类动物中第一个初步的分子系统发育学。

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