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Differential gene expression during early development in recently evolved and sympatric Arctic charr morphs

机译:在最近进化和同胞北极charr形态早期发展期间的差异基因表达。

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摘要

Phenotypic differences between closely related taxa or populations can arise through genetic variation or be environmentally induced, leading to altered transcription of genes during development. Comparative developmental studies of closely related species or variable populations within species can help to elucidate the molecular mechanisms related to evolutionary divergence and speciation. Studies of Arctic charr (Salvelinus alpinus) and related salmonids have revealed considerable phenotypic variation among populations and in Arctic charr many cases of extensive variation within lakes (resource polymorphism) have been recorded. One example is the four Arctic charr morphs in the ∼10,000 year old Lake Thingvallavatn, which differ in numerous morphological and life history traits. We set out to investigate the molecular and developmental roots of this polymorphism by studying gene expression in embryos of three of the morphs reared in a common garden set-up. We performed RNA-sequencing, de-novo transcriptome assembly and compared gene expression among morphs during an important timeframe in early development, i.e., preceding the formation of key trophic structures. Expectedly, developmental time was the predominant explanatory variable. As the data were affected by some form of RNA-degradation even though all samples passed quality control testing, an estimate of 3′-bias was the second most common explanatory variable. Importantly, morph, both as an independent variable and as interaction with developmental time, affected the expression of numerous transcripts. Transcripts with morph effect, separated the three morphs at the expression level, with the two benthic morphs being more similar. However, Gene Ontology analyses did not reveal clear functional enrichment of transcripts between groups. Verification via qPCR confirmed differential expression of several genes between the morphs, including regulatory genes such as AT-Rich Interaction Domain 4A (arid4a) and translin (tsn). The data are consistent with a scenario where genetic divergence has contributed to differential expression of multiple genes and systems during early development of these sympatric Arctic charr morphs.
机译:密切相关的类群或种群之间的表型差异可能是由于遗传变异或环境诱导的,从而导致发育过程中基因的转录发生变化。对密切相关的物种或物种中的可变种群的比较发育研究可以帮助阐明与进化分化和物种形成有关的分子机制。对北极红点鲑(Salvelinus alpinus)和相关鲑鱼的研究表明,种群之间存在明显的表型变异,在北极红点鲑中,已经记录了许多湖泊内大量变异的案例(资源多态性)。一个例子是约10,000年历史的图瓦拉瓦特湖中的四种北极炭黑变种,它们在许多形态和生活史特征上都不同。我们着手通过研究在普通花园中饲养的三种变体在胚胎中的基因表达来研究这种多态性的分子和发育根源。我们进行了RNA测序,de-novo转录组组装,并在早期发育的一个重要时间段内(即在形成关键营养结构之前)比较了不同形态之间的基因表达。可以预期的是,发育时间是主要的解释变量。尽管所有样品都通过了质量控制测试,但由于数据仍受到某种形式的RNA降解的影响,因此3'-bias的估计值是第二常见的解释变量。重要的是,作为独立变量和与发育时间的相互作用,变形影响了许多转录本的表达。具有变体效应的转录本在表达水平上分离了三个变体,其中两个底栖变体更为相似。然而,基因本体论分析没有揭示组之间转录物的明显功能丰富。通过qPCR进行的验证证实了形态之间几个基因的差异表达,包括调节基因,例如AT-Rich Interaction Domain 4A(arid4a)和translin(tsn)。这些数据与这样的情景是一致的:在这些同胞北极charr形态的早期发育过程中,遗传差异导致多个基因和系统的差异表达。

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