牛植入前胚胎中CSF2RA的破坏降低了发育并影响了子宫内胚胎基因的表达。

Froylan Sosa, Kyungjun Uh, Jessica N Drum, Katy S Stoecklein, Kimberly M Davenport, M Sofia Ortega, Kiho Lee, Peter J Hansen
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引用次数: 0

摘要

CSF2在牛胚胎植入前发育中发挥作用的假设是通过评估CSF2RA(胚胎中的功能受体)失活对子宫内胚胎发育的影响来测试的。CRISPR/Cas9用于改变CSF2RA外显子5和内含子5的序列,对照胚胎仅注射Cas9mRNA。受精后第5天>16个细胞的胚胎被转移到7至24组的同步受体雌性。两天后,胚胎被从子宫中冲洗出来。敲除胚胎发育到胚泡阶段的回收胚胎比例(39%)低于对照胚胎(63%)。单个桑椹胚和胚泡的RNA测序显示,共有27个(桑椹胚)或15个(胚泡)差异表达基因(错误发现率
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Disruption of CSF2RA in the bovine preimplantation embryo reduces development and affects embryonic gene expression in utero.

Disruption of CSF2RA in the bovine preimplantation embryo reduces development and affects embryonic gene expression in utero.

Disruption of CSF2RA in the bovine preimplantation embryo reduces development and affects embryonic gene expression in utero.

The hypothesis that CSF2 plays a role in the preimplantation development of the bovine embryo was tested by evaluating consequences of inactivation of CSF2RA (the functional receptor in the embryo) for development of embryos in utero. CRISPR/Cas9 was used to alter sequences on exon 5 and intron 5 of CSF2RA, Control embryos were injected with Cas9 mRNA only. Embryos > 16 cells at day 5 after insemination were transferred to synchronized recipient females in groups of 7 to 24. Embryos were flushed from the uterus two days later. The proportion of recovered embryos that developed to the blastocyst stage was lower for knockout embryos (39%) than for control embryos (63%). RNA sequencing of individual morulae and blastocysts indicated a total of 27 (morula) or 15 (blastocyst) differentially-expressed genes (false discovery rate <0.05). Gene set enrichment analysis indicated that the knockout affected genes playing roles in several functions including cell signaling and glycosylation. It was concluded that signaling through CSF2RA is not obligatory for development of the bovine preimplantation embryo to the blastocyst stage but that CSF2 signaling does enhance the likelihood that the embryo can become a blastocyst and result in specific changes in gene expression.

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