特邀评论:奶牛种群遗传缺陷的管理。

IF 3.7 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
John B. Cole , Christine F. Baes , Sophie A.E. Eaglen , Thomas J. Lawlor , Christian Maltecca , M. Sofía Ortega , Paul M. VanRaden
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引用次数: 0

摘要

当有亲缘关系的动物相互交配时,如果隐性突变从系谱的双方遗传,遗传缺陷可能会变得明显。数百万动物高密度DNA基因型的广泛可用性使得识别和跟踪已知缺陷以及识别和跟踪导致早期胚胎丢失的先前未知缺陷成为可能。虽然已知缺陷的数量随着时间的推移而增加,但载体信息的可用性已被用于显着降低许多疾病的频率。自2016年以来,美国奶牛种群中已知遗传缺陷的经济影响减少了约2/3,主要原因是避免了载体对载体的交配。有效的人口管理需要强有力的系统来报告新的缺陷、确定因果机制和开发商业上可用的测试。美国和加拿大依靠许多团体之间的非正式合作,包括农民、纯种牛协会、基因公司和研究人员,以确定新出现的和因果性缺陷。描述了包括奶牛行业所有关键部门在内的协作系统的结构,以支持长期种群管理。本文综述了奶牛遗传缺陷的研究概况。所涵盖的主题包括与商业乳制品生产商相关的当前缺陷,随着时间的推移载波频率的趋势,如何最好地管理这些缺陷,发现新出现疾病的战略,以及营销和贸易考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Invited review: Management of genetic defects in dairy cattle populations
When related animals are mated to one another, genetic defects may become apparent if recessive mutations are inherited from both sides of the pedigree. The widespread availability of high-density DNA genotypes for millions of animals has made it possible to identify and track known defects as well as to identify and track previously unknown defects that cause early embryonic losses. Although the number of known defects has increased over time, the availability of carrier information has been used to dramatically reduce the frequency of many disorders. The economic impact of known genetic defects in the US dairy cattle population has decreased by ∼2/3 since 2016, due largely to the avoidance of carrier-to-carrier matings. Effective population management requires robust systems for reporting new defects, identification of causal mechanisms, and development of commercially available tests. The United States and Canada depend on informal cooperation among many groups, including farmers, purebred cattle associations, genetics companies, and researchers, to identify emerging and causal defects. The structure of a collaborative system including all key sectors of the dairy cattle industry to support long-term population management is described. This review provides a comprehensive overview of the landscape surrounding genetic defects in dairy cattle. Topics covered include current defects of relevance to commercial dairy producers, trends in carrier frequencies over time, how best to manage these defects, strategies for detecting emerging diseases, and marketing and trade considerations.
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来源期刊
Journal of Dairy Science
Journal of Dairy Science 农林科学-奶制品与动物科学
CiteScore
7.90
自引率
17.10%
发文量
784
审稿时长
4.2 months
期刊介绍: The official journal of the American Dairy Science Association®, Journal of Dairy Science® (JDS) is the leading peer-reviewed general dairy research journal in the world. JDS readers represent education, industry, and government agencies in more than 70 countries with interests in biochemistry, breeding, economics, engineering, environment, food science, genetics, microbiology, nutrition, pathology, physiology, processing, public health, quality assurance, and sanitation.
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