Department of Animal Science, University of California, Davis, Davis, CA 95616, USA.
Department of Animal Science, University of California, Davis, Davis, CA 95616, USA
J Exp Biol. 2020 Feb 7;223(Pt Suppl 1):jeb207159. doi: 10.1242/jeb.207159.
The prospect of genome editing offers a number of promising opportunities for livestock breeders. Firstly, these tools can be used in functional genomics to elucidate gene function, and identify causal variants underlying monogenic traits. Secondly, they can be used to precisely introduce useful genetic variation into structured livestock breeding programs. Such variation may include repair of genetic defects, the inactivation of undesired genes, and the moving of useful alleles and haplotypes between breeds in the absence of linkage drag. Editing could also be used to accelerate the rate of genetic progress by enabling the replacement of the germ cell lineage of commercial breeding animals with cells derived from genetically elite lines. In the future, editing may also provide a useful complement to evolving approaches to decrease the length of the generation interval through generation of gametes. For editing to be adopted, it will need to seamlessly integrate with livestock breeding schemes. This will likely involve introducing edits into multiple elite animals to avoid genetic bottlenecks. It will also require editing of different breeds and lines to maintain genetic diversity, and enable structured cross-breeding. This requirement is at odds with the process-based trigger and event-based regulatory approach that has been proposed for the products of genome editing by several countries. In the absence of regulatory harmony, researchers in some countries will have the ability to use genome editing in food animals, while others will not, resulting in disparate access to these tools, and ultimately the potential for global trade disruptions.
基因组编辑技术为家畜育种者提供了许多有前景的机会。首先,这些工具可用于功能基因组学,以阐明基因功能,并鉴定单基因性状的因果变异。其次,它们可用于精确地将有用的遗传变异引入结构化的家畜育种计划中。这种变异可能包括修复遗传缺陷、失活不需要的基因,以及在没有连锁拖曳的情况下在品种之间移动有用的等位基因和单倍型。编辑还可以通过用来自遗传精英系的细胞取代商业育种动物的生殖细胞系,来加速遗传进展的速度。将来,编辑也可能为减少世代间隔的方法提供有用的补充,通过产生配子来缩短世代间隔。为了采用编辑技术,它需要与家畜育种计划无缝集成。这可能涉及到对多个精英动物进行编辑,以避免遗传瓶颈。它还需要对不同的品种和系进行编辑,以保持遗传多样性,并实现结构化的杂交。这一要求与几个国家对基因组编辑产物提出的基于过程的触发和基于事件的监管方法不一致。在缺乏监管协调的情况下,一些国家的研究人员将有能力在食用动物中使用基因组编辑,而其他国家则不能,从而导致这些工具的使用存在差异,并最终有可能导致全球贸易中断。