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首页> 外文期刊>BMC Genomics >A comparison of gene transcription profiles of domesticated and wild Atlantic salmon (Salmo salar L.) at early life stages, reared under controlled conditions
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A comparison of gene transcription profiles of domesticated and wild Atlantic salmon (Salmo salar L.) at early life stages, reared under controlled conditions

机译:比较在受控条件下饲养的驯养和野生大西洋鲑(Salmo salar L.)生命早期的基因转录谱

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Background Atlantic salmon have been subject to domestication for approximately ten generations, beginning in the early 1970s. This process of artificial selection will have created various genetic differences between wild and farmed stocks. Each year, hundreds of thousands of farmed fish escape into the wild. These escapees may interbreed with wild conspecifics raising concerns for both the fish-farming industry and fisheries managers. Thus, a better understanding of the interactions between domesticated and wild salmon is essential to the continued sustainability of the aquaculture industry and to the maintenance of healthy wild stocks. Results We compared the transcriptomes of a wild Norwegian Atlantic salmon population (Figgjo) and a Norwegian farmed strain (Mowi) at two life stages: yolk sac fry and post first-feeding fry. The analysis employed 44?k oligo-microarrays to analyse gene expression of 36 farmed, wild and hybrid (farmed dam x wild sire) individuals reared under identical hatchery conditions. Although some of the transcriptional differences detected overlapped between sampling points, our results highlighted the importance of studying various life stages. Compared to the wild population, the Mowi strain displayed up-regulation in mRNA translation-related and down regulation in nervous and immune system -related pathways in the sac fry, whereas up-regulation of digestive and endocrine activities, carbohydrate, energy, amino acid and lipid metabolism and down-regulation of environmental information processing and immune system pathways were evident in the feeding fry. Differentially regulated pathways that were common among life stages generally belonged to environmental information processing and immune system functional groups. In addition, we found indications of strong maternal effects, reinforcing the importance of including reciprocal hybrids in the analysis. Conclusions In agreement with previous studies we showed that domestication has caused changes in the transcriptome of wild Atlantic salmon and that many of the affected pathways are life-stage specific We highlighted the importance of reciprocal hybrids to the deconvolution of maternal/paternal effects and our data support the view that the genetic architecture of the strains studied highly influences the genes differentially expressed between wild and domesticated fish.
机译:背景技术从1970年代初开始,大西洋鲑已经驯化了大约十代。这种人工选择的过程将在野生和养殖种群之间造成各种遗传差异。每年,成千上万种养殖鱼类逃到野外。这些逃逸者可能与野生物种混交,引起了养鱼业和渔业管理者的关注。因此,更好地了解驯养和野生鲑鱼之间的相互作用对于水产养殖业的持续可持续性和维护健康的野生种群至关重要。结果我们比较了两个生命阶段的野生挪威大西洋鲑鱼种群(Figgjo)和挪威养殖菌株(Mowi)的转录组:卵黄囊鱼苗和首次喂养后的鱼苗。该分析采用44kk寡芯片,分析了在相同孵化场条件下饲养的36个养殖场,野生和杂交(养殖水坝x野生公牛)个体的基因表达。尽管检测到的一些转录差异在采样点之间重叠,但我们的结果强调了研究各个生命阶段的重要性。与野生种群相比,Mowi菌株在囊胚中显示出mRNA翻译相关的上调和神经与免疫系统相关途径的下调,而消化和内分泌活动,碳水化合物,能量,氨基酸的上调饲料中的脂质代谢以及环境信息处理和免疫系统途径的下调很明显。在生命阶段中常见的差异调节途径通常属于环境信息处理和免疫系统功能组。此外,我们发现了强烈的母体效应迹象,从而增强了在分析中包括相互杂交的重要性。结论与先前的研究一致,我们表明驯化已引起野生大西洋鲑鱼转录组的变化,并且许多受影响的途径是生命阶段特异的。我们强调了相互杂交对母体/父体效应去卷积的重要性和我们的数据支持这样一种观点,即所研究菌株的遗传结构对野生鱼和驯养鱼之间差异表达的基因有很大影响。

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