Department of Ecology and Evolutionary Biology, University of Toronto, 25 Willcocks St., Toronto, ON M5S 3B2, Canada.
Department of Natural History, Royal Ontario Museum, 100 Queens Park, Toronto, ON M5S 2C6, Canada.
Syst Biol. 2023 May 19;72(1):134-149. doi: 10.1093/sysbio/syac051.
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.].
非洲丽鱼科(副科:拟丽鱼科)是最多样化的脊椎动物之一,它们多次快速辐射的倾向使它们成为进化研究中的一个著名模式系统。尽管进行了许多研究,但系统发育不确定性仍然存在,河流谱系在高级系统发育研究中仍然相对代表性不足。不完全谱系分选(ILS)和杂交导致的异质基因历史很可能是不确定性的来源,尤其是在快速物种形成时期。我们在考虑遗传不和谐的多种来源的同时,利用数百个单拷贝外显子的物种树和杂种网络分析来研究拟丽鱼科及其近亲的关系。我们使用杂种参考指导/从头组装方法,提高了对远缘亲属的序列恢复能力,从而扩展了我们探针的分类范围。我们的分析为大多数高级关系提供了强有力的假设,并揭示了广泛的基因异质性,包括河流分类群。在不同的谱系中,ILS 和过去的杂交被确定为遗传不和谐的来源。各种鳚形目(以前为 Ovalentaria)的采样为角鱼科作为慈鲷科的姐妹提供了强有力的基因组支持,并指出了该目中其他可能有用的蛋白质编码标记。一个具有来自不同环境代表的可靠系统发育将支持慈鲷模式系统中的正在进行的分类和比较进化研究。