Genetic modification for bimaternal embryo development

Author:

Kono Tomohiro

Abstract

Full mammalian development typically requires genomes from both the oocyte and spermatozoon. Biparental reproduction is necessary because of parent-specific epigenetic modification of the genome during gametogenesis; that is, a maternal methylation imprint imposed during the oocyte growth period and a paternal methylation imprint imposed in pregonadal gonocytes. This leads to unequivalent expression of imprinted genes from the maternal and paternal alleles in embryos and individuals. It is possible to hypothesise that the maternal methylation imprint is necessary to prevent parthenogenesis, which extinguishes the opportunity for having descendents, whereas the paternal methylation imprint prevents parthenogenesis, ensuring that a paternal contribution is obligatory for any descendants. To date, there are several lines of direct evidence that the epigenetic modifications that occur during oocyte growth have a decisive effect on mammalian development. Using bimaternal embryos with two sets of maternal genomes, the present paper illustrates how parental methylation imprints are an obstacle to the progression of parthenogenesis.

Publisher

CSIRO Publishing

Subject

Developmental Biology,Endocrinology,Genetics,Molecular Biology,Animal Science and Zoology,Reproductive Medicine,Biotechnology

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Cell Cycle, DNA Replication, Centrosomes, Centrioles and Cell Division;Cellular Mechanics and Biophysics;2020

2. Epigenetics and Human Assisted Reproduction;In-Vitro Fertilization;2019-12-31

3. Symposium review: Embryo survival—A genomic perspective of the other side of fertility;Journal of Dairy Science;2019-04

4. On human parthenogenesis;Medical Hypotheses;2017-09

5. Epigenetics of Livestock Breeding;Handbook of Epigenetics;2017

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