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高密度全基因组关联分析鉴定绵羊血液单核细胞计数的新基因座。

A high-density genome-wide association with absolute blood monocyte count in domestic sheep identifies novel loci.

机构信息

Department of Veterinary Microbiology & Pathology, Washington State University, Pullman, Washington, United States of America.

USDA-ARS Animal Disease Research, Pullman, Washington, United States of America.

出版信息

PLoS One. 2022 May 6;17(5):e0266748. doi: 10.1371/journal.pone.0266748. eCollection 2022.

Abstract

Monocytes are a core component of the immune system that arise from bone marrow and differentiate into cells responsible for phagocytosis and antigen presentation. Their derivatives are often responsible for the initiation of the adaptive immune response. Monocytes and macrophages are central in both controlling and propagating infectious diseases such as infection by Coxiella burnetii and small ruminant lentivirus in sheep. Genotypes from 513 Rambouillet, Polypay, and Columbia sheep (Ovis aries) were generated using the Ovine SNP50 BeadChip. Of these sheep, 222 animals were subsequently genotyped with the Ovine Infinium® HD SNP BeadChip to increase SNP coverage. Data from the 222 HD genotyped sheep were combined with the data from an additional 258 unique sheep to form a 480-sheep reference panel; this panel was used to impute the low-density genotypes to the HD genotyping density. Then, a genome-wide association analysis was conducted to identify loci associated with absolute monocyte counts from blood. The analysis used a single-locus mixed linear model implementing EMMAX with age and ten principal components as fixed effects. Two genome-wide significant peaks (p < 5x10-7) were identified on chromosomes 9 and 1, and ten genome-wide suggestive peaks (p < 1x10-5) were identified on chromosomes 1, 2, 3, 4, 9, 10, 15, and 16. The identified loci were within or near genes including KCNK9, involved into cytokine production, LY6D, a member of a superfamily of genes, some of which subset monocyte lineages, and HMGN1, which encodes a chromatin regulator associated with myeloid cell differentiation. Further investigation of these loci is being conducted to understand their contributions to monocyte counts. Investigating the genetic basis of monocyte lineages and numbers may in turn provide information about pathogens of veterinary importance and elucidate fundamental immunology.

摘要

单核细胞是免疫系统的核心组成部分,它们起源于骨髓,并分化为负责吞噬和抗原呈递的细胞。它们的衍生物通常负责启动适应性免疫反应。单核细胞和巨噬细胞在控制和传播传染病方面起着核心作用,如绵羊感染柯克斯体和小反刍动物慢病毒。使用绵羊 SNP50 珠芯片生成了 513 只 Rambouillet、Polypay 和哥伦比亚绵羊(Ovis aries)的基因型。其中 222 只动物随后用绵羊 Infinium® HD SNP 珠芯片进行了基因型分析,以增加 SNP 覆盖率。来自 222 只 HD 基因型绵羊的数据与另外 258 只独特绵羊的数据相结合,形成了一个 480 只绵羊参考群体;该群体用于将低密度基因型推断到 HD 基因型密度。然后,进行全基因组关联分析,以鉴定与血液中单核细胞计数相关的基因座。该分析使用单基因座混合线性模型,使用 EMMAX 实现,年龄和十个主成分作为固定效应。在染色体 9 和 1 上确定了两个全基因组显著峰(p < 5x10-7),在染色体 1、2、3、4、9、10、15 和 16 上确定了十个全基因组提示峰(p < 1x10-5)。鉴定的基因座位于包括参与细胞因子产生的 KCNK9 基因、属于基因超家族成员的 LY6D 基因、以及编码与骨髓细胞分化相关的染色质调节剂的 HMGN1 基因在内或附近。正在进一步研究这些基因座,以了解它们对单核细胞计数的贡献。研究单核细胞谱系和数量的遗传基础反过来可能提供有关兽医重要病原体的信息,并阐明基本免疫学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27e1/9075649/43aa19c41506/pone.0266748.g001.jpg

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