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Rapid identification of bovine MHCI haplotypes in genetically divergent cattle populations Using Next-Generation Sequencing

机译:使用新一代测序快速鉴定遗传上分化的牛群中的牛mHCI单倍型

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摘要

The major histocompatibility complex (MHC) region contains many genes that are key regulators of both innate and adaptive immunity including the polymorphic MHCI and MHCII genes. Consequently, the characterisation of the repertoire of MHC genes is critical to understanding the variation that determines the nature of immune responses. Our current knowledge of the bovine MHCI repertoire is limited with only the Holstein-Friesian breed having been studied in any depth. Traditional methods of MHCI genotyping are of low resolution and laborious and this has been a major impediment to a more comprehensive analysis of the MHCI repertoire of other cattle breeds. Next-generation sequencing (NGS) technologies have been used to enable high throughput and much higher resolution MHCI typing in a number of species. In this study we have developed a MiSeq platform approach and requisite bioinformatics pipeline to facilitate typing of bovine MHCI repertoires. The method was validated initially on a cohort of Holstein-Friesian animals and then demonstrated to enable characterisation of MHCI repertoires in African cattle breeds, for which there was limited or no available data. During the course of these studies we identified >140 novel classical MHCI genes and defined 62 novel MHCI haplotypes, dramatically expanding the known bovine MHCI repertoire.
机译:主要的组织相容性复合体(MHC)区包含许多基因,它们是先天和适应性免疫的关键调节因子,包括多态性MHCI和MHCII基因。因此,MHC基因库的表征对于了解决定免疫应答性质的变异至关重要。我们目前对牛MHCI种类的了解有限,只有对霍尔斯坦-弗里斯兰品种进行了深入研究。传统的MHCI基因分型方法分辨率低且费力,这已成为对其他牛品种MHCI种类进行更全面分析的主要障碍。下一代测序(NGS)技术已用于实现高通量和更高分辨率的MHCI输入,从而可以输入许多物种。在这项研究中,我们开发了一种MiSeq平台方法和必要的生物信息学流水线,以促进牛MHCI曲目的分型。该方法最初在一组荷斯坦-弗里斯兰动物上得到了验证,然后证明可以表征非洲牛品种中的MHCI组成,而这些数据很少或没有可用数据。在这些研究过程中,我们鉴定了140多个新颖的MHCI经典基因,并定义了62个MHCI单体型,极大地扩展了已知的牛MHCI谱系。

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