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Reproductive technologies and the porcine embryonic transcriptome

机译:生殖技术与猪胚胎转录组

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摘要

The domestic pig is not only an economically-important livestock species, but also an increasingly recognized biomedical animal model due to its physiological similarities with humans. As a result, there is a strong interest in the factors that affect the efficient production of viable embryos and offspring in the pig using either in vivo or in vitro production methods. The application of assisted reproductive technologies (ART) has the potential to increase reproductive efficiency in livestock. These technologies include, but are not limited to: artificial insemination (AI), fixed-time AI, embryo transfer, cryopreservation of sperm/oocytes/embryos, in vitro fertilization and somatic cell nuclear transfer (cloning). However, the application of ART is much less efficient in the pig than in many other mammalian species such as cattle. Until recently, the underlying causes of these inefficiencies have been difficult to study, but advances in molecular biology techniques for studying gene expression have resulted in the availability of a variety of options for gene expression profiling such as microarrays, and next generation sequencing technologies. Capitalizing on these technologies the effects of various ARTs on the porcine embryonic transcriptome has been determined and the impact on the related biological pathways and functions been evaluated. The implications of these results on the efficiency of ARTs in swine, as well potential consequences for the developing embryo and resulting offspring, are reviewed
机译:家猪不仅是经济上重要的牲畜物种,而且由于其与人的生理相似性而成为日益受到认可的生物医学动物模型。结果,人们对使用体内或体外生产方法影响猪中活胚和后代有效生产的因素产生了浓厚的兴趣。辅助生殖技术(ART)的应用有可能提高牲畜的生殖效率。这些技术包括但不限于:人工授精(AI),固定时间AI,胚胎移植,精子/卵母细胞/胚胎冷冻保存,体外受精和体细胞核移植(克隆)。但是,ART在猪中的应用效率远不如许多其他哺乳动物(如牛)有效。直到最近,这些低效率的根本原因一直难以研究,但是用于研究基因表达的分子生物学技术的进步已导致提供了用于基因表达谱分析的多种选择,例如微阵列和下一代测序技术。利用这些技术,已经确定了各种抗逆转录病毒疗法对猪胚胎转录组的影响,并评估了对相关生物学途径和功能的影响。审查了这些结果对猪ARTs效率的影响,以及对发育中的胚胎和后代的潜在影响

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