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Exon-based Phylogenomics and the Relationships of African Cichlid Fishes: Tackling the Challenges of Reconstructing Phylogenies with Repeated Rapid Radiations

机译:基于外显子的系统发育组学和非洲慈鲷鱼的关系:应对用重复快速辐射重建系统发育的挑战

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摘要

African cichlids (subfamily: Pseudocrenilabrinae) are among the most diverse vertebrates, and their propensity for repeated rapid radiation has made them a celebrated model system in evolutionary research. Nonetheless, despite numerous studies, phylogenetic uncertainty persists, and riverine lineages remain comparatively underrepresented in higher-level phylogenetic studies. Heterogeneous gene histories resulting from incomplete lineage sorting (ILS) and hybridization are likely sources of uncertainty, especially during episodes of rapid speciation. We investigate the relationships of Pseudocrenilabrinae and its close relatives while accounting for multiple sources of genetic discordance using species tree and hybrid network analyses with hundreds of single-copy exons. We improve sequence recovery for distant relatives, thereby extending the taxonomic reach of our probes, with a hybrid reference guided/de novo assembly approach. Our analyses provide robust hypotheses for most higher-level relationships and reveal widespread gene heterogeneity, including in riverine taxa. ILS and past hybridization are identified as the sources of genetic discordance in different lineages. Sampling of various Blenniiformes (formerly Ovalentaria) adds strong phylogenomic support for convict blennies (Pholidichthyidae) as sister to Cichlidae and points to other potentially useful protein-coding markers across the order. A reliable phylogeny with representatives from diverse environments will support ongoing taxonomic and comparative evolutionary research in the cichlid model system. [African cichlids; Blenniiformes; Gene tree heterogeneity; Hybrid assembly; Phylogenetic network; Pseudocrenilabrinae; Species tree.]
机译:非洲慈鳷(亚科:Pseudocrenilabrinae)是最多样化的脊椎动物之一,它们反复快速辐射的倾向使它们成为进化研究中著名的模型系统。尽管如此,尽管进行了大量研究,但系统发育的不确定性仍然存在,河流谱系在更高级别的系统发育研究中仍然相对代表性不足。由不完全谱系分选 (ILS) 和杂交导致的异质基因历史可能是不确定性的来源,尤其是在快速物种形成期间。我们研究了 Pseudocrenilabrinae 及其近亲的关系,同时使用具有数百个单拷贝外显子的物种树和混合网络分析来解释遗传不一致的多个来源。我们通过混合参考引导/从头组装方法改进了远亲的序列恢复,从而扩展了探针的分类范围。我们的分析为大多数更高层次的关系提供了稳健的假设,并揭示了广泛的基因异质性,包括在河流类群中。ILS 和过去的杂交被确定为不同谱系中遗传不一致的来源。对各种 Blenniiformes (以前的 Ovalentaria) 的采样增加了对罪犯 blennies (Pholidichthyidae) 作为慈鳔科姐妹的强大系统发育支持,并指出了整个目中其他可能有用的蛋白质编码标记。由来自不同环境的代表组成的可靠系统发育将支持慈鳔模型系统中正在进行的分类学和比较进化研究。[非洲慈鳔;Blenniiformes;基因树异质性;混合组装;系统发育网络;假 crenilabrinae;物种树。

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