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Animal breeding and disease

机译:动物繁殖与疾病

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Single-locus disorders in domesticated animals were among the first Mendelian traits to be documented after the rediscovery of Mendelism, and to be included in early linkage maps. The use of linkage maps and (increasingly) comparative genomics has been central to the identification of the causative gene for single-locus disorders of considerable practical importance. The 'score-card' in domestic animals is now more than 100 disorders for which the molecular lesion has been identified and hence for which a DNA test is available. Because of the limited lifespan of any such test, a cost-effective and hence popular means of protecting the intellectual property inherent in a DNA test is not to publish the discovery. While understandable, this practice creates a disconcerting precedent. For multifactorial disorders that are scored on an all-or-none basis or into many classes, the effectiveness of control schemes could be greatly enhanced by selection on estimated breeding values for liability. Genetic variation for resistance to pathogens and parasites is ubiquitous. Selection for resistance can therefore be successful. Because of the technical and welfare challenges inherent in the requirement to expose animals to pathogens or parasites in order to be able to select for resistance, there is a very active search for DNA markers for resistance. The first practical fruits of this research were seen in 2002, with the launch of a national scrapie control programme in the UK.
机译:重新发现孟德尔主义后,驯养动物的单基因座疾病是最早的孟德尔性状之一,并将其​​纳入早期的连锁图谱中。连锁图谱的使用和(越来越多的)比较基因组学一直是确定具有重要实际意义的单基因座疾病致病基因的关键。现在,家畜中的“记分卡”是100多种疾病,已经鉴定出了分子病变,因此可以进行DNA检测。由于任何此类测试的寿命有限,因此保护DNA测试固有的知识产权的具有成本效益且因此流行的方法是不公开发现。虽然可以理解,但是这种做法开创了令人不安的先例。对于基于全有或全无或多类评分的多因素疾病,通过选择责任的估计育种值可以大大提高控制方案的有效性。对病原体和寄生虫的抗性的遗传变异是普遍存在的。因此可以成功选择电阻。由于将动物暴露于病原体或寄生虫以便能够选择抗性的要求中固有的技术和福利挑战,因此人们非常积极地寻找抗性的DNA标记。这项研究的第一个实际成果是在2002年,在英国启动了一项全国性的瘙痒病防治计划。

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