首页> 美国卫生研究院文献>other >The Shepherds’ Tale: A Genome-Wide Study across 9 Dog Breeds Implicates Two Loci in the Regulation of Fructosamine Serum Concentration in Belgian Shepherds
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The Shepherds’ Tale: A Genome-Wide Study across 9 Dog Breeds Implicates Two Loci in the Regulation of Fructosamine Serum Concentration in Belgian Shepherds

机译:牧羊人的故事:一项针对9个犬种的全基因组研究表明比利时牧羊犬体内果糖胺血清浓度的调节涉及两个基因座

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摘要

Diabetes mellitus is a serious health problem in both dogs and humans. Certain dog breeds show high prevalence of the disease, whereas other breeds are at low risk. Fructosamine and glycated haemoglobin (HbA1c) are two major biomarkers of glycaemia, where serum concentrations reflect glucose turnover over the past few weeks to months. In this study, we searched for genetic factors influencing variation in serum fructosamine concentration in healthy dogs using data from nine dog breeds. Considering all breeds together, we did not find any genome-wide significant associations to fructosamine serum concentration. However, by performing breed-specific analyses we revealed an association on chromosome 3 (pcorrected ≈ 1:68 × 10-6) in Belgian shepherd dogs of the Malinois subtype. The associated region and its close neighbourhood harbours interesting candidate genes such as LETM1 and GAPDH that are important in glucose metabolism and have previously been implicated in the aetiology of diabetes mellitus. To further explore the genetics of this breed specificity, we screened the genome for reduced heterozygosity stretches private to the Belgian shepherd breed. This revealed a region with reduced heterozygosity that shows a statistically significant interaction (p = 0.025) with the association region on chromosome 3. This region also harbours some interesting candidate genes and regulatory regions but the exact mechanisms underlying the interaction are still unknown. Nevertheless, this finding provides a plausible explanation for breed-specific genetic effects for complex traits in dogs. Shepherd breeds are at low risk of developing diabetes mellitus. The findings in Belgian shepherds could be connected to a protective mechanism against the disease. Further insight into the regulation of glucose metabolism could improve diagnostic and therapeutic methods for diabetes mellitus.
机译:糖尿病在狗和人类中都是严重的健康问题。某些犬种显示出该病的高患病率,而其他犬种则处于低风险。果糖胺和糖化血红蛋白(HbA1c)是血糖的两个主要生物标志物,其血清浓度反映了过去几周至几个月的葡萄糖代谢。在这项研究中,我们使用九种犬种的数据搜索了影响健康犬血清果糖胺浓度变化的遗传因素。综合考虑所有品种,我们未发现与全果糖胺血清浓度相关的全基因组显着关联。但是,通过进行特定品种的分析,我们发现了玛利诺犬亚型的比利时牧羊犬的3号染色体(校正后的≈1:68×10 -6 )存在关联。相关区域及其附近区域包含有趣的候选基因,例如LETM1和GAPDH,它们在葡萄糖代谢中很重要,并且以前与糖尿病的病因有关。为了进一步探索该品种特异性的遗传学,我们筛选了比利时牧羊犬品种专有的减少的杂合性延伸的基因组。这揭示了杂合度降低的区域,该区域显示与3号染色体上的缔合区域具有统计学上的显着相互作用(p = 0.025)。该区域还包含一些有趣的候选基因和调控区,但相互作用的确切机制仍未知。然而,这一发现为狗的复杂性状的特定品种遗传效应提供了合理的解释。牧羊犬患糖尿病的风险较低。比利时牧羊犬的发现可能与该疾病的保护机​​制有关。对葡萄糖代谢调节的进一步了解可以改善糖尿病的诊断和治疗方法。

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