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MHC Genotyping by SSCP and Amplicon-Based NGS Approach in Chamois

机译:SSCP和基于扩增子的NGS方法在Chamois中的MHC基因分型

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Genes of the major histocompatibility complex (MHC) code for cell surface proteins essential for adaptive immunity. They show the most outstanding genetic diversity in vertebrates, which has been connected with various fitness traits and thus with the long-term persistence of populations. In this study, polymorphism of the MHC class II DRB locus was investigated in chamois with Single-Strand Conformation Polymorphism (SSCP)/Sanger genotyping and Ion Torrent S5 next-generation sequencing (NGS). From eight identified DRB variants in 28 individuals, five had already been described, and three were new, undescribed alleles. With conventional SSCP/Sanger sequencing, we were able to detect seven alleles, all of which were also detected with NGS. We found inconsistencies in the individual genotypes between the two methods, which were mainly caused by allelic dropout in the SSCP/Sanger method. Six out of 28 individuals were falsely classified as homozygous with SSCP/Sanger analysis. Overall, 25% of the individuals were identified as genotyping discrepancies between the two methods. Our results show that NGS technologies are better performing in sequencing highly variable regions such as the MHC, and they also have a higher detection capacity, thus allowing a more accurate description of the genetic composition, which is crucial for evolutionary and population genetic studies.
机译:细胞表面蛋白质主要组织相容性复合物(MHC)代码的基因,适应性免疫必不可少。它们展示了脊椎动物中最出色的遗传多样性,这已与各种健身性状相关,从而具有群体的长期持久性。在该研究中,在麂皮中研究了MHC II类DRB基因座的多态性,具有单链构象多态性(SSCP)/ Sanger基因分型和离子血管S5下一代测序(NGS)。来自28个个体的八个鉴定的DRB变体,已经描述了五个,三个是新的,未被描述的等位基因。通过常规SSCP / Sanger测序,我们能够检测七个等位基因,所有这些等位基因也被用NGS检测到。我们发现两种方法之间的个体基因型不一致,这主要是由SSCP / Sanger方法中的等位基因丢失引起的。 28例中有六种因SSCP / Sanger分析被错误分类为纯合。总体而言,25%的个体被确定为两种方法之间的基因分型差异。我们的结果表明,NGS技术在测序诸如MHC的高度可变区时更好地表演,并且它们也具有更高的检测能力,从而允许更准确地描述遗传组合物,这对于进化和群体遗传学研究至关重要。

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