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虹鳟鱼中三个旁系同源pax7基因的进化历史与表观遗传调控

Evolutionary history and epigenetic regulation of the three paralogous pax7 genes in rainbow trout.

作者信息

Seiliez Iban, Froehlich Jacob Michael, Marandel Lucie, Gabillard Jean-Charles, Biga Peggy R

机构信息

INRA, UR1067 Nutrition Métabolisme Aquaculture, F-64310, St-Pée-sur-Nivelle, France.

出版信息

Cell Tissue Res. 2015 Mar;359(3):715-27. doi: 10.1007/s00441-014-2060-0. Epub 2014 Dec 10.

Abstract

The extraordinary muscle growth potential of teleost fish, particular those of the Salmoninae clade, elicits questions about the regulation of the relatively highly conserved transcription factors of the myogenic program. The pseudotetraploid nature of the salmonid genome adds another layer of regulatory complexity that must be reconciled with epigenetic data to improve our understanding of the achievement of lifelong muscle growth in these fish. We identify three paralogous pax7 genes (pax7a1, pax7a2 and pax7b) in the rainbow trout genome. During in vitro myogenesis, pax7a1 transcripts remain stable, whereas pax7a2 and pax7b mRNAs increase in abundance, similarly to myogenin mRNAs but in contrast to the expression pattern of the mammalian ortholog. We also profile the distribution of repressive H3K27me3 and H3K9me3 and permissive H3K4me3 marks during in vitro myogenesis across these loci and find that pax7a2 expression is associated with decreased H3K27 trimethylation, whereas pax7b expression is correlated with decreased H3K9me3 and H3K27me3. These data link the unique differential expression of pax7 paralogs with epigenetic histone modifications in a vertebrate species displaying growth divergent from that of mammals and highlight an important divergence in the regulatory mechanisms of pax7 expression among vertebrates. The system described here provides a more comprehensive picture of the combinatorial control mechanisms orchestrating skeletal muscle growth in a salmonid, leading to a better understanding of myogenesis in this species and across Vertebrata more generally.

摘要

硬骨鱼,特别是鲑亚科鱼类具有非凡的肌肉生长潜力,这引发了关于肌源性程序中相对高度保守的转录因子调控的问题。鲑科鱼类基因组的假四倍体性质增加了另一层调控复杂性,必须将其与表观遗传数据相结合,以增进我们对这些鱼类终身肌肉生长实现机制的理解。我们在虹鳟鱼基因组中鉴定出三个旁系同源的pax7基因(pax7a1、pax7a2和pax7b)。在体外肌生成过程中,pax7a1转录本保持稳定,而pax7a2和pax7b的mRNA丰度增加,类似于肌细胞生成素mRNA,但与哺乳动物直系同源基因的表达模式相反。我们还分析了体外肌生成过程中这些基因座上抑制性H3K27me3和H3K9me3以及许可性H3K4me3标记的分布,发现pax7a2的表达与H3K27三甲基化的减少相关,而pax7b的表达与H3K9me3和H3K27me3的减少相关。这些数据将pax7旁系同源基因独特的差异表达与脊椎动物物种中与哺乳动物不同的生长表观遗传组蛋白修饰联系起来,并突出了脊椎动物中pax7表达调控机制的重要差异。这里描述的系统提供了一个更全面的组合控制机制图景,该机制协调了鲑科鱼类的骨骼肌生长,从而更好地理解该物种以及更广泛的脊椎动物的肌生成。

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