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早期卵裂分裂过程中微核的形成是牛植入前胚胎丢失的一个潜在标志。

Micronucleus formation during early cleavage division is a potential hallmark of preimplantation embryonic loss in cattle.

机构信息

Faculty of Biology-Oriented Science and Technology (BOST), Kindai University, Wakayama, Japan; Research and Development Center, Fuso Pharmaceutical Industries, Ltd., Osaka, Japan.

Faculty of Biology-Oriented Science and Technology (BOST), Kindai University, Wakayama, Japan.

出版信息

Biochem Biophys Res Commun. 2022 Aug 30;617(Pt 2):25-32. doi: 10.1016/j.bbrc.2022.05.075. Epub 2022 Jun 1.

Abstract

In assisted reproductive technology (ART)-derived embryos of non-rodent mammals, including humans and cattle, chromosome segregation errors are highly likely to occur during early cleavage division, resulting in aneuploidy, including mosaicism. However, the relationship between chromosomal segregation errors during early cleavage and subsequent embryonic development has not been detailed in these mammals. In the present study, we developed non-invasive live-cell imaging of chromosome segregation dynamics using a histone H2B-mCherry mRNA probe in bovine preimplantation embryos. Chromosome segregation errors in early cleavage affected blastocyst formation. Especially, embryos that underwent abnormal chromosome segregation (ACS) with multiple or large micronucleus formation rarely developed into blastocysts. Embryos with the severe ACS had prolonged cell cycle duration. After transfer of blastocysts with live-cell imaging of chromosome segregation to ten cows, six became pregnant and four of them gave full-term offspring. Interestingly, two of them were derived from blastocysts with ACS. Hence, chromosomal segregation errors with micronucleus formation during early cleavage can be a fatal hallmark of preimplantation embryogenesis in cattle. This technique has shown potential for understanding the relationship between chromosome segregation error and subsequent embryo development, and for selecting viable ART-derived embryos for medical and livestock production.

摘要

在辅助生殖技术(ART)衍生的非啮齿类哺乳动物胚胎中,包括人类和牛,早期卵裂过程中极有可能发生染色体分离错误,导致非整倍体,包括嵌合体。然而,这些哺乳动物中早期卵裂过程中的染色体分离错误与随后的胚胎发育之间的关系尚未详细描述。在本研究中,我们使用组蛋白 H2B-mCherry mRNA 探针在牛胚胎中开发了非侵入性的早期染色体分离动态活细胞成像。早期卵裂中的染色体分离错误影响囊胚形成。特别是,经历多次或大的微核形成的异常染色体分离(ACS)的胚胎很少发育成囊胚。具有严重 ACS 的胚胎细胞周期持续时间延长。将染色体分离活细胞成像的囊胚转移到十头奶牛后,六头怀孕,其中四人产下足月后代。有趣的是,其中两人来自具有 ACS 的囊胚。因此,早期卵裂中带有微核形成的染色体分离错误可能是牛植入前胚胎发生的致命标志。这项技术显示出了在了解染色体分离错误与随后胚胎发育之间的关系,并选择用于医疗和畜牧业生产的可行的 ART 衍生胚胎方面的潜力。

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