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首页> 外文期刊>Asian-Australasian Journal of Animal Sciences >Expression Profiles of the Insulin-like Growth Factor System Components in Liver Tissue during Embryonic and Postnatal Growth of Erhualian and Yorkshire Reciprocal Cross F-1 Pigs
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Expression Profiles of the Insulin-like Growth Factor System Components in Liver Tissue during Embryonic and Postnatal Growth of Erhualian and Yorkshire Reciprocal Cross F-1 Pigs

机译:二化lian和约克郡对等杂交F-1猪胚胎和产后生长过程中胰岛素样生长因子系统组分在肝脏组织中的表达谱

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摘要

In Erhualian and Yorkshire reciprocal cross F-1 pig populations, we examined the mRNA expression characteristic of liver-derived IGF-1, IGF-1R, IGF-2, IGF-2R and IGFBP-3 during the embryonic and postnatal developmental periods (E50, E70, E90, D1, D20, D70, D120 and D180). Our results demonstrated that the IGF-system genes mRNA levels exhibited an ontogenetic expression pattern, which was potentially associated with the porcine embryonic development, postnatal growth, organogenesis and even the initiation and acceleration of puberty. The expression pattern of IGF-system genes showed variation in the reciprocal cross (F-1 YE and EY pigs). This study also involved the expression features of imprinted genes IGF-2 and IGF-2R. The parent-of-origin effect of imprinted genes was reflected by their differential expression between the reciprocal crosses populations. The correlation analysis also indicated that the regulatory network and mechanisms involved in the IGF system were a complex issue that needs to be more fully explored. A better understanding of IGF system components and their interactive mechanisms will enable researchers to gain insights not only into animal organogenesis but also into somatic growth development and even reproduction.
机译:在二花lian和约克夏互惠的F-1猪种群中,我们检查了胚胎和出生后发育阶段肝脏衍生的IGF-1,IGF-1R,IGF-2,IGF-2R和IGFBP-3的mRNA表达特征(E50) ,E70,E90,D1,D20,D70,D120和D180)。我们的研究结果表明,IGF系统基因的mRNA水平表现出个体发育的表达模式,这可能与猪的胚胎发育,出生后的生长,器官发生,甚至青春期的开始和加速有关。 IGF系统基因的表达模式显示了相互交叉的变异(F-1 YE和EY猪)。该研究还涉及印迹基因IGF-2和IGF-2R的表达特征。印记基因的原产地效应通过相互交叉的种群之间的差异表达来反映。相关分析还表明,IGF系统中涉及的监管网络和机制是一个复杂的问题,需要更全面地探讨。对IGF系统组件及其相互作用机制的更好理解将使研究人员不仅对动物器官发生,而且对体细胞生长发育甚至繁殖都有深刻见解。

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