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Relationships of the Sphaeromatidae genera (Peracarida: Isopoda) inferred from 18S rDNA and 16S rDNA genes

机译:从18S rDNA和16S rDNA基因推断出的球孢属(Peracarida:Isopoda)的关系

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The Sphaeromatidae has 100 genera and close to 700 species with a worldwide distribution. Most are abundant primarily in shallow (< 200 m) marine communities, but extend to 1.400 m, and are occasionally present in permanent freshwater habitats. They play an important role as prey for epibenthic fishes and are commensals and scavengers. Sphaeromatids’ impressive exploitation of diverse habitats, in combination with diversity in female life history strategies and elaborate male combat structures, has resulted in extraordinary levels of homoplasy. We sequenced specimens from 39 genera for nuclear 18S rDNA and mitochondrial 16S rDNA genes, comprehensively reviewed the effects of alignments on tree topology, and performed Garli and MrBayes analyses. These data consistently retrieved clades (genus groups), Sphaeroma, Exosphaeroma, Cymodoce, Ischyromene, Cerceis, and Dynamenella and the monogeneric clade of Gnorimosphaeroma. We define the major clades using morphological characters, attribute sampled taxa to consistently and strongly supported ones and suggest placement of unsampled genera based on their morphological characteristics. Within each clade, we also highlight unresolved and poorly sampled genera. We point out taxonomic problems in hopes of encouraging further phylogenetic exploration. Although we identify clades containing consistent generic groups and are confident that some groups will prove stable and reliable, we feel our sampling is insufficient to propose nomenclatural changes at this time.
机译:球形夜蛾科有100属,近700种,分布于世界各地。大多数都主要分布在浅海(<200 m)的海洋社区中,但延伸到1.400 m,偶尔存在于永久性淡水栖息地中。它们作为表皮鱼类的猎物发挥着重要作用,并且是奖赏和清道夫。鳞甲纲目动物对各种栖息地的令人印象深刻的开发,再加上女性生活史策略的多样性和精心打造的男性战斗结构,导致了同质异形。我们对39个属的标本进行了核18S rDNA和线粒体16S rDNA基因测序,全面审查了比对对树形拓扑的影响,并进行了Garli和MrBayes分析。这些数据一致地检索了进化枝(属组),球形肉瘤,外胚层瘤,Cymodoce,Ischyromene,Cerceis和Dynamenella以及单性生殖腺孢子瘤。我们使用形态特征定义主要进化枝,将采样的分类单元归因于一致且有力的支持,并根据其形态特征建议未采样属的位置。在每个进化枝中,我们还突出显示了未解析和采样差的属。我们指出了分类学问题,以期鼓励进一步的系统发育探索。尽管我们确定了包含一致的通用组的进化枝,并确信某些组将证明是稳定和可靠的,但我们仍认为我们的采样不足以提出此时的命名更改。

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