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The influence of parental effects on transcriptomic landscape during early developmentin brook charr (Salvelinus fontinalis Mitchill)

机译:早期发育过程中父母效应对转录组景观的影响在布鲁克·查尔(Salvelinus fontinalisMitchill)

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摘要

Parental effects represent an important source of variation in offspring phenotypes. Depending on the specific mechanisms involved, parental effects may be caused to different degrees by either the maternal or the paternal parent, and these effects may in turn act at different stages of development. To detect parental effects acting on gene transcription regulation and length phenotype during ontogeny, the transcriptomic profiles of two reciprocal hybrids from Laval × Rupert and Laval × Domestic populations of brook charr were compared at hatching, yolk sac resorption and 15 weeks after exogenous feeding. Using a salmonid cDNA microarray, our results show that parental effects modulated gene expression among reciprocal hybrids only at the yolk sac resorption stage. In addition, Laval × Domestic and Laval × Rupert reciprocal hybrids differed in the magnitude of theses parental effects, with 199 and 630 differentially expressed transcripts, respectively. This corresponds to a maximum of 18.5% of the analyzed transcripts. These transcripts are functionally related to cell cycle, nucleic acid metabolism and intracellular protein traffic, which is consistent with observed differences associated with embryonic development and growth differences in other fish species. Our results thus illustrate how parental effects on patterns of gene transcription seem dependent on the genetic architecture of the parents. In addition, inabsence of transcriptional differences, non-transcript deposits in the yolk sac couldcontribute to the observed length differences among the reciprocal hybrids before yolk sacresorption.
机译:父母的影响是后代表型变异的重要来源。取决于所涉及的特定机制,父母或父母的父母可能在不同程度上引起父母的影响,而这些影响又可能在发育的不同阶段起作用。为了检测亲本对个体发育过程中基因转录调控和长度表型的影响,在孵化,卵黄囊吸收和外源饲喂15周后,比较了Laval×Rupert和Laval×家养布鲁克布鲁克的两个相互杂交的转录组谱。使用鲑鱼的cDNA芯片,我们的研究结果表明,亲本效应仅在卵黄囊吸收阶段调节相互杂交中的基因表达。此外,Laval×家养和Laval×Rupert互惠杂种在这些亲本效应的大小上有所不同,分别有199和630个差异表达的转录本。这最多相当于分析的笔录的18.5%。这些转录本在功能上与细胞周期,核酸代谢和细胞内蛋白质运输有关,这与观察到的与其他鱼类的胚胎发育和生长差异有关的差异一致。因此,我们的结果说明了父母对基因转录模式的影响似乎如何取决于父母的遗传结构。另外,在没有转录差异,卵黄囊中的非转录物沉积可能有助于观察到卵黄囊前互生杂种之间的长度差异吸收。

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