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首页> 外文期刊>BMC Evolutionary Biology >Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
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Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation

机译:白鱼(Coregonus sp。)幼年生活史阶段的基因调控差异和基因组分离的出现

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Background The evolution of barriers to reproduction is of key interest to understand speciation. However, there may be a current bias towards studying intrinsic postzygotic isolation in old species pairs as compared to the emergence of barriers to gene flow through adaptive divergence. This study evaluates the relative importance of both processes in the evolution of genomic isolation in incipient species of whitefish (Coregonus clupeaformis) for which preliminary data suggest that postzygotic isolation emerges with intrinsic factors acting at embryo stages but also due to extrinsic factors during adult life. Results Gene expression data were screened using cDNA microarrays to identify regulatory changes at embryo and juvenile stages that provide evidence for genomic divergence at the underlying genetic factors. A comparison of different life history stages shows that 16-week old juvenile fish have 14 times more genes displaying significant regulatory divergence than embryos. Furthermore, regulatory changes in juvenile fish match patterns in adult fish suggesting that gene expression divergence is established early in juvenile fish and persists throughout the adult phase. Comparative analyses with results from previous studies on dwarf-normal species pairs show that at least 26 genetic factors identified in juvenile fish are candidate traits for adaptive divergence in adult fish. Eight of these show parallel directions of gene expression divergence independent of tissue type or age of the fish. The latter are associated with energy metabolism, a complex trait known to drive adaptive divergence in dwarf and normal whitefish. Conclusion Although experimental evidence suggests the existence of genetic factors that cause intrinsic postzygotic isolation acting in embryos, the analysis presented here provided few candidate genes in embryos, which also corroborate previous studies showing a lack of ecological divergence between sympatric dwarf and normal whitefish at the larval stage. In contrast, gene expression divergence in juveniles can be linked to adaptive traits and seems to be driven by positive selection. The results support the idea that adaptive differentiation may be more important in explaining the emergence of barriers to gene flow in an early phase of speciation by providing a broad genomic basis for extrinsic postzygotic isolation rather than intrinsic barriers.
机译:背景技术繁殖障碍的发展是了解物种形成的关键。但是,与通过适应性发散来阻碍基因流动的障碍的出现相比,目前在研究旧物种对中固有的后合子分离方面可能存在偏见。这项研究评估了这两个过程在白鱼(Coregonus clupeaformis)的初始物种的基因组分离进化中的相对重要性,为此初步数据表明,合子后分离的出现具有内在因素作用于胚胎阶段,也归因于成年后的外在因素。结果使用cDNA微阵列筛选了基因表达数据,以鉴定胚胎和幼年期的调控变化,从而为潜在遗传因子的基因组差异提供了证据。对不同生活史阶段的比较表明,16周龄的幼鱼显示出显着的调控差异的基因比胚胎多14倍。此外,成年鱼中幼鱼匹配模式的调节变化表明,基因表达差异在幼鱼中较早建立,并在成年阶段持续存在。与以前对矮人正常物种对的研究结果进行的比较分析表明,在幼鱼中识别出的至少26个遗传因素是成年鱼适应性发散的候选性状。其中八个显示平行的基因表达方向,与鱼的组织类型或年龄无关。后者与能量代谢有关,能量代谢是一个复杂的特征,已知会导致矮人和正常白鱼的适应性发散。结论尽管实验证据表明存在导致内在合子分离的遗传因素,但此处提供的分析提供了胚胎中很少的候选基因,这也证实了先前的研究,即同卵幼体与幼体正常白鲑之间缺乏生态差异。阶段。相反,少年的基因表达差异可能与适应性状有关,并且似乎是由积极选择驱动的。结果支持这样的观点,即通过为外源性后合子分离提供广泛的基因组基础,而不是固有的障碍,适应性分化可能在解释物种形成的早期阶段对基因流的障碍的出现中更为重要。

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