Benavides Fernando, Rülicke Thomas, Prins Jan-Bas, Bussell James, Scavizzi Ferdinando, Cinelli Paolo, Herault Yann, Wedekind Dirk
Department of Epigenetics and Molecular Carcinogenesis, The University of Texas, MD Anderson Cancer Center, USA.
Institute of Laboratory Animal Science, University of Veterinary Medicine, Vienna, Austria.
Lab Anim. 2020 Apr;54(2):135-148. doi: 10.1177/0023677219867719. Epub 2019 Aug 20.
Genetic quality assurance (QA), including genetic monitoring (GeMo) of inbred strains and background characterization (BC) of genetically altered (GA) animal models, should be an essential component of any QA programme in laboratory animal facilities. Genetic quality control is as important for ensuring the validity of the animal model as health and microbiology monitoring are. It should be required that studies using laboratory rodents, mainly mice and rats, utilize genetically defined animals. This paper, presented by the FELASA Working Group on Genetic Quality Assurance and Genetic Monitoring of Laboratory Murines, describes the objectives of and available methods for genetic QA programmes in rodent facilities. The main goals of any genetic QA programme are: (a) to verify the authenticity and uniformity of inbred stains and substrains, thus ensuring a genetically reliable colony maintenance; (b) to detect possible genetic contamination; and (c) to precisely describe the genetic composition of GA lines. While this publication focuses mainly on mouse and rat genetic QA, the principles will apply to other rodent species some of which are briefly mentioned within the context of inbred and outbred stocks.
遗传质量保证(QA),包括近交系的遗传监测(GeMo)和基因改造(GA)动物模型的背景特征分析(BC),应成为实验动物设施中任何质量保证计划的重要组成部分。遗传质量控制对于确保动物模型的有效性与健康和微生物监测同样重要。应要求使用实验啮齿动物(主要是小鼠和大鼠)的研究采用基因定义明确的动物。本文由FELASA实验小鼠遗传质量保证和遗传监测工作组撰写,描述了啮齿动物设施中遗传质量保证计划的目标和可用方法。任何遗传质量保证计划的主要目标是:(a)验证近交系和亚系的真实性和一致性,从而确保遗传可靠的种群维持;(b)检测可能的遗传污染;(c)精确描述基因改造品系的遗传组成。虽然本出版物主要关注小鼠和大鼠的遗传质量保证,但这些原则也适用于其他啮齿动物物种,其中一些将在近交和远交种群的背景下简要提及。