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基因编辑为研究参与猪繁殖的基因提供了一种工具。

Gene editing provides a tool to investigate genes involved in reproduction of pigs.

机构信息

Division of Animal Sciences, University of Missouri, Columbia, Missouri, USA.

出版信息

Mol Reprod Dev. 2023 Jul;90(7):459-468. doi: 10.1002/mrd.23620. Epub 2022 Jun 23.

Abstract

CRISPR-Cas9 gene editing technology provides a method to generate loss-of-function studies to investigate, in vivo, the specific role of specific genes in regulation of reproduction. With proper design and selection of guide RNAs (gRNA) designed to specifically target genes, CRISPR-Cas9 gene editing allows investigation of factors proposed to regulate biological pathways involved with establishment and maintenance of pregnancy. The advantages and disadvantages of using the current gene editing technology in a large farm species is discussed. CRISPR-Cas9 gene editing of porcine conceptuses has generated new perspectives for the regulation of endometrial function during the establishment of pregnancy. The delicate orchestration of conceptus factors facilitates an endometrial proinflammatory response while regulating maternal immune cell migration and expansion at the implantation site is essential for establishment and maintenance of pregnancy. Recent developments and use of endometrial epithelial "organoids" to study endometrial function in vitro provides a future method to screen and target specific endometrial genes as an alternative to generating a gene edited animal model. With continuing improvements in gene editing technology, future researchers will be able to design studies to enhance our knowledge of mechanisms essential for early development and survival of the conceptus.

摘要

CRISPR-Cas9 基因编辑技术为研究特定基因在调节生殖方面的具体作用提供了一种方法,可在体内进行失活功能研究。通过设计和选择专门针对特定基因的向导 RNA (gRNA),CRISPR-Cas9 基因编辑可用于研究被提议调节与妊娠建立和维持相关的生物途径的因素。讨论了在大型农场动物中使用当前基因编辑技术的优缺点。CRISPR-Cas9 对猪胚胎的基因编辑为调节妊娠建立期间子宫内膜功能提供了新的视角。胚胎因子的精细协调有助于子宫内膜的促炎反应,同时调节母体内皮细胞免疫细胞在着床部位的迁移和扩张,对妊娠的建立和维持至关重要。最近对子宫内膜上皮“类器官”的开发和应用为体外研究子宫内膜功能提供了一种未来的方法,可以筛选和靶向特定的子宫内膜基因,作为生成基因编辑动物模型的替代方法。随着基因编辑技术的不断改进,未来的研究人员将能够设计研究来增强我们对早期胚胎发育和生存所必需的机制的认识。

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