基因组选择
生物
基因分型
背景(考古学)
选择(遗传算法)
生殖技术
生物技术
单核苷酸多态性
计算生物学
胚胎
遗传学
基因型
计算机科学
基因
胚胎发生
古生物学
人工智能
作者
Claire Ponsart,Daniel Le Bourhis,Hiemke M. Knijn,Sébastien Fritz,C. Guyader-Joly,Thomas Otter,S. Lacaze,F. Charreaux,Laurent Schibler,D. Dupassieux,Erik Mullaart
摘要
Genomic tools are now available for most livestock species and are used routinely for genomic selection (GS) in cattle. One of the most important developments resulting from the introduction of genomic testing for dairy cattle is the application of reasonably priced low-density single nucleotide polymorphism technology in the selection of females. In this context, combining genome testing and reproductive biotechnologies in young heifers enables new strategies to generate replacement and elite females in a given period of time. Moreover, multiple markers have been detected in biopsies of preimplantation stage embryos, thus paving the way to develop new strategies based on preimplantation diagnosis and the genetic screening of embryos. Based on recent advances in GS, the present review focuses on new possibilities inherent in reproductive technologies used for commercial purposes and in genetic schemes, possible side effects and beneficial impacts on reproductive efficiency. A particular focus is on the different steps allowing embryo genotyping, including embryo micromanipulation, DNA production and quality assessment.
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