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Genetic markers of canine hip dysplasia

机译:犬髋关节发育不良的遗传标记

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Canine hip dysplasia is a complex skeletal malformation caused by genetic and environmental factors. The prevalence of hip dysplasia in different canine breeds ranges widely, from 1% (for Whippet and Borzoi) to over 70% (for Bulldog and Pug). These differences indicate the presence of genetic variants predisposing to or preventing this disorder in gene pools of particular breeds. The importance of genetic factors is also confirmed by a high coefficient of heritability (h(2)) of canine hip dysplasia, which for most breeds oscillates around 0.5-0.6. Application of modern genomic methods, that is, mainly genome scanning (based previously on microsatellite markers and currently on SNP microarrays) has led in recent years to the identification of potential genetic markers associated with this disorder. Such studies were carried out mostly in two breeds: Labrador retriever and German shepherd. Some of the markers were found in the vicinity of genes involved in skeletal development. Following these achievements, the use of some markers has been suggested for early risk diagnosis of hip dysplasia. This shows that molecular testing is becoming important for not only monogenic, but also polygenic canine diseases and disorders. Identification of genetic markers associated with predisposition to hip dysplasia offers an opportunity for an early risk evaluation of this disorder (prior to its first signs). Moreover, it facilitates effective breeding selection aimed at eradicating undesirable genetic variants from the gene pool of a given breed.
机译:犬髋关节发育不良是由遗传和环境因素引起的复杂骨骼畸形。不同犬类繁殖的髋关节发育不良的患病率广泛地,从1%(适用于Whippet和Borzoi)到超过70%(用于斗牛犬和哈巴狗)。这些差异表明存在遗传变异的存在,所述遗传变异易刻或预防特定品种的基因库中的这种疾病。遗传因子的重要性也通过犬髋关节发育不良的高遗传性(H(2))确认,这对于大多数品种振荡约为0.5-0.6。现代基因组方法的应用,即主要是基因组扫描(以前基于微卫星标志物和目前在SNP微阵列上的基础上)导致近年来鉴定与这种疾病相关的潜在遗传标记。这些研究主要是两种品种:拉布拉多猎犬和德国牧羊犬。一些标记被发现在参与骨骼发育的基因附近。在这些成就之后,已经提出了使用一些标记的使用,用于髋关节发育不良的早期风险诊断。这表明分子测试对于不仅是单一的单一的,而且对多种子癌疾病和疾病变得重要。鉴定与髋关节发育不良相关的遗传标志物相关的遗传标志物为这种疾病的早期风险评估提供了机会(在其第一个标志之前)。此外,它有助于有效的育种选择,旨在从给定品种的基因库中消除不希望的遗传变异。

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