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A genome resource to address mechanisms of developmental programming: Determination of the fetal sheep heart transcriptome

机译:解决发育程序化机制的基因组资源:确定胎羊心脏转录组

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The pregnant sheep has provided seminal insights into reproduction related to animal and human development (ovarian function, fertility, implantation, fetal growth, parturition and lactation). Fetal sheep physiology has been extensively studied since 1950, contributing significantly to the basis for our understanding of many aspects of fetal development and behaviour that remain in use in clinical practice today. Understanding mechanisms requires the combination of systems approaches uniquely available in fetal sheep with the power of genomic studies. Absence of the full range of sheep genomic resources has limited the full realization of the power of this model, impeding progress in emerging areas of pregnancy biology such as developmental programming. We have examined the expressed fetal sheep heart transcriptome using high-throughput sequencing technologies. In so doing we identified 36,737 novel transcripts and describe genes, gene variants and pathways relevant to fundamental developmental mechanisms. Genes with the highest expression levels and with novel exons in the fetal heart transcriptome are known to play central roles in muscle development. We show that high-throughput sequencing methods can generate extensive transcriptome information in the absence of an assembled and annotated genome for that species. The gene sequence data obtained provide a unique genomic resource for sheep specific genetic technology development and, combined with the polymorphism data, augment annotation and assembly of the sheep genome. In addition, identification and pathway analysis of novel fetal sheep heart transcriptome splice variants is a first step towards revealing mechanisms of genetic variation and gene environment interactions during fetal heart development.
机译:怀孕的绵羊对与动物和人类发育有关的生殖(卵巢功能,生育力,着床,胎儿生长,分娩和泌乳)提供了开创性的见识。自1950年以来,对胎儿绵羊的生理学已进行了广泛的研究,为我们对当今临床实践中仍在使用的许多胎儿发育和行为方面的理解做出了重要贡献。要了解机制,就需要结合基因组研究的力量,在胎羊中独特地使用系统方法。绵羊基因组资源的全面缺乏限制了该模型功能的充分实现,从而阻碍了诸如开发程序设计等新兴的妊娠生物学领域的发展。我们已经使用高通量测序技术检查了表达的胎羊心脏转录组。通过这样做,我们确定了36,737个新颖的转录本,并描述了与基本发育机制相关的基因,基因变体和途径。胎儿心脏转录组中具有最高表达水平和新外显子的基因在肌肉发育中起着核心作用。我们显示高通量测序方法可以在没有该物种的组装和注释基因组的情况下生成广泛的转录组信息。获得的基因序列数据为绵羊特异性遗传技术的发展提供了独特的基因组资源,并与多态性数据相结合,增强了绵羊基因组的注释和装配。此外,新型胎儿绵羊心脏转录组剪接变体的鉴定和途径分析是揭示胎儿心脏发育过程中遗传变异和基因环境相互作用机制的第一步。

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