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全能性在两细胞期小鼠胚胎的姐妹卵裂球之间分离。

Totipotency segregates between the sister blastomeres of two-cell stage mouse embryos.

机构信息

Max Planck Institute for Molecular Biomedicine, Roentgenstrasse 20, Muenster, 48149, Germany.

University Hospital Muenster, Core Genomic Facility, Albert-Schweitzer-Campus 1, Building D3, Muenster, 48149, Germany.

出版信息

Sci Rep. 2017 Aug 15;7(1):8299. doi: 10.1038/s41598-017-08266-6.

Abstract

Following fertilization in mammals, it is generally accepted that totipotent cells are exclusive to the zygote and to each of the two blastomeres originating from the first mitotic division. This model of totipotency was inferred from a minority of cases in which blastomeres produced monozygotic twins in mice. Was this due to experimental limitation or biological constraint? Here we removed experimental obstacles and achieved reliable quantification of the prevalence of dual totipotency among mouse two-cell stage blastomeres. We separated the blastomeres of 1,252 two-cell embryos, preserving 1,210 of the pairs. Two classes of monozygotic twins became apparent at the blastocyst stage: 27% formed a functional epiblast in both members (concordant), and 73% did so in only one member of the pair (discordant) - a partition that proved insensitive to oocyte quality, sperm-entry point, culture environment and pattern of cleavage. In intact two-cell embryos, the ability of sister blastomeres to generate epiblast was also skewed. Class discovery clustering of the individual blastomeres' and blastocysts' transcriptomes points to an innate origin of concordance and discordance rather than developmental acquisition. Our data place constraints on the commonly accepted idea that totipotency is allocated equally between the two-cell stage blastomeres in mice.

摘要

哺乳动物受精后,普遍认为全能细胞仅存在于受精卵和第一次有丝分裂产生的两个卵裂球中。这种全能性模型是根据少数情况下,卵裂球在小鼠中产生同卵双胞胎的情况推断出来的。这是由于实验限制还是生物学限制?在这里,我们消除了实验障碍,并可靠地量化了小鼠两细胞期卵裂球中双重全能性的流行程度。我们分离了 1,252 个两细胞胚胎的卵裂球,保留了 1,210 对。在囊胚阶段出现了两类同卵双胞胎:27%的双胞胎在两个成员中都形成了功能性上胚层(一致),73%的双胞胎只在一对中的一个成员中形成(不一致)-这种分离对卵母细胞质量、精子进入点、培养环境和分裂模式不敏感。在完整的两细胞胚胎中,姐妹卵裂球产生上胚层的能力也存在偏向。单个卵裂球和囊胚转录组的类别发现聚类表明,一致性和不一致性的产生源自内在,而不是发育获得。我们的数据限制了普遍接受的观点,即全能性在小鼠的两细胞期卵裂球中平均分配。

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