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首页> 外文期刊>EvoDevo >Ancestral and derived attributes of the dlx gene repertoire, cluster structure and expression patterns in an African cichlid fish
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Ancestral and derived attributes of the dlx gene repertoire, cluster structure and expression patterns in an African cichlid fish

机译:非洲丽鱼科鱼dlx基因谱系的祖先和衍生属性,簇结构和表达模式

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Background Cichlid fishes have undergone rapid, expansive evolutionary radiations that are manifested in the diversification of their trophic morphologies, tooth patterning and coloration. Understanding the molecular mechanisms that underlie the cichlids' unique patterns of evolution requires a thorough examination of genes that pattern the neural crest, from which these diverse phenotypes are derived. Among those genes, the homeobox-containing Dlx gene family is of particular interest since it is involved in the patterning of the brain, jaws and teeth. Results In this study, we characterized the dlx genes of an African cichlid fish, Astatotilapia burtoni, to provide a baseline to later allow cross-species comparison within Cichlidae. We identified seven dlx paralogs (dlx1a, -2a, -4a, -3b, -4b, -5a and -6a), whose orthologies were validated with molecular phylogenetic trees. The intergenic regions of three dlx gene clusters (dlx1a-2a, dlx3b-4b, and dlx5a-6a) were amplified with long PCR. Intensive cross-species comparison revealed a number of conserved non-coding elements (CNEs) that are shared with other percomorph fishes. This analysis highlighted additional lineage-specific gains/losses of CNEs in different teleost fish lineages and a novel CNE that had previously not been identified. Our gene expression analyses revealed overlapping but distinct expression of dlx orthologs in the developing brain and pharyngeal arches. Notably, four of the seven A. burtoni dlx genes, dlx2a, dlx3b, dlx4a and dlx5a, were expressed in the developing pharyngeal teeth. Conclusion This comparative study of the dlx genes of A. burtoni has deepened our knowledge of the diversity of the Dlx gene family, in terms of gene repertoire, expression patterns and non-coding elements. We have identified possible cichlid lineage-specific changes, including losses of a subset of dlx expression domains in the pharyngeal teeth, which will be the targets of future functional studies.
机译:背景丽鱼科鱼类经历了快速,广泛的进化辐射,这些辐射表现为其营养形态,牙齿图案和颜色的多样化。要了解丽鱼科动物独特的进化模式的分子机制,就需要对构成神经pattern的基因进行彻底的检查,从而从中衍生出这些不同的表型。在那些基因中,含有同源异型框的Dlx基因家族特别令人感兴趣,因为它参与了大脑,颌骨和牙齿的图案形成。结果在这项研究中,我们表征了非洲丽鱼科鱼白纹病(Astatotilapia burtoni)的dlx基因,以提供基线,以便以后在丽鱼科内进行跨物种比较。我们确定了七个dlx旁系同源物(dlx1a,-2a,-4a,-3b,-4b,-5a和-6a),其直系同源性已通过分子系统树进行了验证。通过长PCR扩增了三个dlx基因簇(dlx1a-2a,dlx3b-4b和dlx5a-6a)的基因间区域。深入的跨物种比较显示,许多保守的非编码元素(CNE)与其他percomorph鱼类共有。该分析突出显示了不同硬骨鱼谱系中CNE的其他谱系特定收益/损失,以及以前未发现的新型CNE。我们的基因表达分析揭示了dlx直系同源基因在发育中的脑和咽弓中的重叠但截然不同的表达。值得注意的是,七个伯顿曲霉dlx基因中的四个,dlx2a,dlx3b,dlx4a和dlx5a在发育中的咽齿中表达。结论这项对burtoni的dlx基因进行的比较研究,加深了我们对Dlx基因家族多样性的认识,包括基因库,表达模式和非编码元件。我们已经确定了可能的丽鱼科植物特定谱系变化,包括咽齿中dlx表达域子集的丢失,这将是未来功能研究的目标。

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