首页> 外文期刊>Heredity: An International Journal of Genetics >A new hybrid approach for MHC genotyping: high-throughput NGS and long read MinION nanopore sequencing, with application to the non-model vertebrate Alpine chamois (Rupicapra rupicapra).
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A new hybrid approach for MHC genotyping: high-throughput NGS and long read MinION nanopore sequencing, with application to the non-model vertebrate Alpine chamois (Rupicapra rupicapra).

机译:一种新的MHC基因分型混合方法:高通量NGS和长读肉型纳米孔测序,应用于非模型脊椎动物麂(Rupicapra Rupica)。

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摘要

The major histocompatibility complex (MHC) acts as an interface between the immune system and infectious diseases. Accurate characterization and genotyping of the extremely variable MHC loci are challenging especially without a reference sequence. We designed a combination of long-range PCR, Illumina short-reads, and Oxford Nanopore MinION long-reads approaches to capture the genetic variation of the MHC II DRB locus in an Italian population of the Alpine chamois (Rupicapra rupicapra). We utilized long-range PCR to generate a 9?Kb fragment of the DRB locus. Amplicons from six different individuals were fragmented, tagged, and simultaneously sequenced with Illumina MiSeq. One of these amplicons was sequenced with the MinION device, which produced long reads covering the entire amplified fragment. A pipeline that combines short and long reads resolved several short tandem repeats and homopolymers and produced a de novo reference, which was then used to map and genotype the short reads from all individuals. The assembled DRB locus showed a high level of polymorphism and the presence of a recombination breakpoint. Our results suggest that an amplicon-based NGS approach coupled with single-molecule MinION nanopore sequencing can efficiently achieve both the assembly and the genotyping of complex genomic regions in multiple individuals in the absence of a reference sequence.
机译:主要的组织相容性综合体(MHC)作为免疫系统和传染病之间的界面。极端变量MHC基因座的精确表征和基因分型是挑战,特别是没有参考序列。我们设计了远程PCR,Illumina短读和牛津纳米孔群的组合,即可捕获在高山麂(Rupicapra Rupicapra)的意大利人口中MHC II DRB基因座的遗传变异。我们利用远程PCR产生DRB基因座的9?KB片段。来自六种不同个体的扩增子分段,标记,并与Illumina miseq同时测序。这些扩增子中的一种用碎片装置测序,该碎片装置产生覆盖整个放大片段的长读数。将短期和长读数结合的管道解决了几个短串联重复和均聚物,并产生了一种新的参考文献,然后用于映射和基因型来自所有人的短读。组装的DRB基因座显示出高水平的多态性和重组断裂点的存在。我们的研究结果表明,基于扩增子的NGS与单分子簇纳米孔测序的方法可以有效地在不存在参考序列的情况下在多个中的复杂基因组区域的组装和基因分型。

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  • 作者单位

    Department of Life Sciences and Biotechnology University of Ferrara;

    Center for Tropical &

    Emerging Global Diseases University of Georgia;

    Department of Life Sciences and Biotechnology University of Ferrara;

    Department of Experimental and Clinical Medicine University of Florence;

    Department of Life Sciences and Biotechnology University of Ferrara;

    Department of Life Sciences and Biotechnology University of Ferrara;

    Department of Life Sciences and Biotechnology University of Ferrara;

    Laboratório de Fisiologia e Controle de Artrópodes Vetores Instituto Oswaldo Cruz Fiocruz Rio de;

    Berlin Center for Genomics in Biodiversity Research K?nigin-Luise-Str. 6-8 Berlin;

    Department of Life Sciences and Biotechnology University of Ferrara;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

  • 入库时间 2022-08-20 08:02:39

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