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Divergent Allometric Trajectories in Gene Expression and Coexpression Produce Species Differences in Sympatrically Speciating Midas Cichlid Fish

机译:基因表达和共表达中不同的异速轨迹在同属物种的麦达斯丽鱼科鱼中产生物种差异。

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摘要

The mechanisms of speciation without geographic isolation (i.e., sympatric speciation) remain debated. This is due in part to the fact that the genomic landscape that could promote or hinder species divergence in the presence of gene flow is still largely unknown. However, intensive research is now centered on understanding the genetic architecture of adaptive traits associated with this process as well as how gene expression might affect these traits. Here, using RNA-Seq data, we investigated gene expression of sympatrically speciating benthic and limnetic Neotropical cichlid fishes at two developmental stages. First, we identified groups of coexpressed genes (modules) at each stage. Although there are a few large and well-preserved modules, most of the other modules are not preserved across life stages. Second, we show that later in development more and larger coexpression modules are associated with divergence between benthic and limnetic fish compared with the earlier life stage. This divergence between benthic and limnetic fish in coexpression mirrors divergence in overall expression between benthic and limnetic fish, which is more pronounced later in life. Our results reveal that already at 1-day posthatch benthic and limnetic fish diverge in (co)expression, and that this divergence becomes more substantial when fish are free-swimming but still unlikely to have divergent swimming and feeding habits. More importantly, our study describes how the coexpression of several genes through development, as opposed to individual genes, is associated with benthic–limnetic species differences, and how two morphogenetic trajectories diverge as fish grow older.
机译:没有地理隔离的物种形成机制(即同胞物种形成)仍存在争议。这部分是由于以下事实:在存在基因流的情况下可促进或阻碍物种分化的基因组格局仍是未知之数。但是,现在的深入研究集中在理解与此过程相关的适应性状的遗传结构,以及基因表达如何影响这些性状。在这里,我们使用RNA-Seq数据,研究了两个发育阶段同生的底栖和近缘新热带丽鱼科鱼的基因表达。首先,我们在每个阶段确定了一组共表达的基因(模块)。尽管有一些大型且保存完好的模块,但大多数其他模块并未在生命周期中保留。其次,我们表明,与早期生命阶段相比,在后期开发中,越来越多的更大的共表达模块与底栖鱼类和边缘鱼类之间的差异有关。共表达中底栖鱼类和边缘鱼类之间的这种差异反映了底栖鱼类和边缘鱼类之间总体表达的差异,这在以后的生活中更为明显。我们的研究结果表明,在孵化后1天,底栖鱼类和边缘鱼类在(共)表达中出现了分歧,并且当鱼类自由游动但仍不太可能具有不同的游泳和摄食习惯时,这种分歧变得更加明显。更重要的是,我们的研究描述了与个体基因相反的几种基因通过发育的共表达如何与底栖生物的物种差异相关,以及随着鱼类的长大,两种形态发生的轨迹如何分化。

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