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首页> 外文期刊>Cladistics: The international journal of the Willi Hennig Society >Phylogeny and biogeography of cichlid fishes (Teleostei: Perciformes: Cichlidae)
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Phylogeny and biogeography of cichlid fishes (Teleostei: Perciformes: Cichlidae)

机译:丽鱼科鱼类的系统发育和生物地理学(Teleostei:仙贝目:丽鱼科)

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Family level molecular phylogenetic analyses of cichlid fishes have generally suffered from a limited number of characters and/or poor taxonomic sampling across one or more major geographic assemblage, and therefore have not provided a robust test of early intrafamilial diversification. Herein we use both nuclear and mitochondrial nucleotide characters and direct optimization to reconstruct a phylogeny for cichlid fishes. Representatives of major cichlid lineages across all geographic assemblages are included, as well as nearly twice the number of characters as any prior family-level study. In a strict consensus of 81 equally most-parsimonious hypotheses, based on the simultaneous analysis of 2222 aligned nucleotide characters from two mitochondrial and two nuclear genes, four major subfamilial lineages are recovered with strong support. Etroplinae, endemic to Madagascar (Paretroplus) and southern Asia (Etroplus), is recovered as the sister taxon to the remainder of Cichlidae. Although the South Asian cichlids are monophyletic, the Malagasy plus South Asian lineages are not. The remaining Malagasy lineage, Ptychochrominae, is monophyletic and is recovered as the sister group to a clade comprising the African and Neotropical cichlids. The African (Pseudocrenilabrinae) and Neotropical (Cichlinae) lineages are each monophyletic in this reconstruction. The use of multiple molecular markers, from both mitochondrial and nuclear genes, results in a phylogeny that in general exhibits strong support, notably for early diversification events within Cichlidae. Results further indicate that Labroidei is not monophyletic, and that the sister group to Cichlidae may comprise a large and diverse assemblage of percomorph lineages. This hypothesis may at least partly explain why morphological studies that have attempted to place Cichlidae within Percomorpha, or that have tested cichlid monophyly using only "labroid" lineages, have met with only limited success.
机译:丽鱼科鱼类的家庭水平分子系统发育分析通常受到一个或多个主要地理组合的有限数量的特征和/或较差的分类学采样的影响,因此未提供对早期家族内多样化的有力检验。在这里,我们同时使用核和线粒体核苷酸特征,并直接优化以重建丽鱼科鱼类的系统发育。包括所有地理组合中主要丽鱼科动物谱系的代表,其字符数几乎是以前任何家庭水平研究的两倍。在对81个最简约假设的严格共识下,基于对来自两个线粒体和两个核基因的2222个对齐核苷酸特征的同时分析,在有力支持下可以回收到四个主要的亚家族谱系。马达加斯加(Paretroplus)和南亚(Etroplus)特有的Etroplinae被作为Cichlidae其余部分的姊妹分类群而回收。尽管南亚丽鱼科动物是单系的,但马达加斯加人和南亚血统却不是。剩下的马达加斯加血统,即鼠疫嗜铬菌(Ptychochrominae),是单系的,作为姊妹群被回收到包括非洲和新热带丽鱼科鱼的进化枝中。非洲(Pseudocrenilabrinae)和新热带(Cichlinae)世系在此重建中都是单系的。来自线粒体和核基因的多种分子标记的使用导致系统发育,总体上显示出强有力的支持,特别是对丽鱼科内部的早期多样化事件。结果进一步表明,Labroidei不是单系的,而丽鱼科的姊妹群可能包括大量的变体谱系。该假设至少可以部分解释为什么试图将丽鱼科置于Percomorpha内或仅使用“蝶形”谱系单眼测试丽鱼科的形态学研究仅获得了有限的成功。

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