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中美洲丽鱼科鱼类侧线鳞片与椎骨的数量性状协同进化及基因组共定位

Meristic co-evolution and genomic co-localization of lateral line scales and vertebrae in Central American cichlid fishes.

作者信息

Ehemann Nicolas, Franchini Paolo, Meyer Axel, Hulsey C Darrin

机构信息

Department of Biology University of Konstanz Konstanz Germany.

Department of Ecological and Biological Sciences Tuscia University Viterbo Italy.

出版信息

Ecol Evol. 2024 Sep 15;14(9):e70266. doi: 10.1002/ece3.70266. eCollection 2024 Sep.

Abstract

Meristic traits are often treated as distinct phenotypes that can be used to differentiate and delineate recently diverged species. For instance, the number of lateral line scales and vertebrae, two traits that vary substantially among Neotropical Heroine cichlid species, have been previously suggested to co-evolve. These meristic traits could co-evolve due to shared adaptive, developmental, or genetic factors. If they were found to be genetically or developmentally non-independent, this might require a more general re-evaluation of their role in evolutionary or taxonomic studies. We expanded a previous analysis of correlated evolution of meristic traits (lateral line scales and vertebrae counts) in these fishes to include a range of phylogenetic reconstructions as well as the analyses of 13 Nicaraguan Midas cichlid species ( spp.). Additionally, we performed qualitative traits locus (QTL) mapping in a F2 laboratory-reared hybrid population from two ecologically divergent Midas cichlid fish species to discover and evaluate whether genomic co-segregation might explain the observed patterns of meristic co-evolution. Meristic values for these traits were found to morphologically differentiate some species of the Midas cichlid adaptive radiation. Our QTL analysis pinpointed several genomic regions associated with divergence in these traits and highlighted the potential for genomic co-segregation of the lateral line and vertebrae numbers on two chromosomes. Further, our phylogenetic comparative analyses consistently recovered a significant positive evolutionary correlation between the counts of lateral line scale and vertebrae numbers in Neotropical cichlids. Hence, the findings of genomic co-segregation could partially explain the co-evolution of these two meristic traits in these species. Continuing to unravel the genetic architecture governing meristic divergence helps to better understand both trait correlations and the utility of meristic traits in taxonomic diagnoses and how traits in phenotypes might be expected to co-evolve.

摘要

可数性状通常被视为不同的表型,可用于区分和界定最近分化的物种。例如,侧线鳞片数和椎骨数这两个在新热带地区丽鱼科慈鲷物种中差异很大的性状,此前有人认为它们是共同进化的。这些可数性状可能由于共享的适应性、发育性或遗传因素而共同进化。如果发现它们在遗传或发育上并非独立,这可能需要对它们在进化或分类学研究中的作用进行更全面的重新评估。我们扩展了之前对这些鱼类可数性状(侧线鳞片数和椎骨数)相关进化的分析,以纳入一系列系统发育重建以及对13种尼加拉瓜米达斯丽鱼(Midas cichlid)物种的分析。此外,我们在来自两种生态不同的米达斯丽鱼科鱼类的F2实验室饲养杂交群体中进行了数量性状位点(QTL)定位,以发现和评估基因组共分离是否可以解释观察到的可数性状共同进化模式。发现这些性状的可数数值在形态上区分了米达斯丽鱼适应性辐射的一些物种。我们的QTL分析确定了几个与这些性状差异相关的基因组区域,并突出了两条染色体上侧线鳞片数和椎骨数基因组共分离的可能性。此外,我们的系统发育比较分析一致发现新热带丽鱼科鱼类的侧线鳞片数和椎骨数之间存在显著的正进化相关性。因此,基因组共分离的发现可以部分解释这些物种中这两个可数性状的共同进化。继续解开控制可数性状差异的遗传结构有助于更好地理解性状相关性以及可数性状在分类诊断中的效用,以及表型中的性状可能如何共同进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fff4/11402520/92d72209a746/ECE3-14-e70266-g006.jpg

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