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Incompatibility between mitochondrial and nuclear genomes during oogenesis results in ovarian failure and embryonic lethality

机译:在卵巢衰竭和胚胎致命性期间的线粒体和核基因组之间的不相容性

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Mitochondrial dysfunction can cause female infertility. An important unresolved issue is the extent to which incompatibility between mitochondrial and nuclear genomes contributes to female infertility. It has previously been shown that a mitochondrial haplotype from D. simulans (simw(501)) is incompatible with a nuclear genome from the D. melanogaster strain Oregon-R (OreR), resulting in impaired development, which was enhanced at higher temperature. This mitonuclear incompatibility is between alleles of the nuclear-encoded mitochondrial tyrosyl-tRNA synthetase (Aatm) and the mitochondrialencoded tyrosyl-tRNA that it aminoacylates. Here, we show that this mito-nuclear incompatibility causes a severe temperature-sensitive female infertility. The OreR nuclear genome contributed to death of ovarian germline stem cells and reduced egg production, which was further enhanced by the incompatibility with simw(501) mitochondria. Mito-nuclear incompatibility also resulted in aberrant egg morphology and a maternal-effect on embryonic chromosome segregation and survival, which was completely dependent on the temperature and mito-nuclear genotype of the mother. Our findings show that maternal mito-nuclear incompatibility during Drosophila oogenesis has severe consequences for egg production and embryonic survival, with important broader relevance to human female infertility and mitochondrial replacement therapy.
机译:线粒体功能障碍会导致女性不孕症。重要的未解决问题是线粒体和核基因组之间不相容的程度,有助于女性不孕症。先前已经表明,来自D. Simulans(SIMW(501))的线粒体单倍型与来自D. melanogaster菌株甲克(ORER)的核基因组不相容,导致显影受损,在较高温度下增强。这种分核不相容性是核编码的线粒体酪氨酸-TRNA合成酶(AATM)的等位基因和其氨基酰化氨基磺酸盐的线粒体型酪氨酰-TNA。在这里,我们表明这种核心核不相容性导致严重的温度敏感的女性不孕症。 Orer核基因组导致卵巢种系干细胞的死亡,并降低鸡蛋产生,通过与SIMW(501)线粒体的不相容性进一步增强。核心核不相容性也导致异常蛋形态和母体作用对胚胎染色体隔离和存活,这完全取决于母亲的温度和核心核基因型。我们的研究结果表明,果蝇在果蝇中的母体核核不相容性对鸡蛋产生和胚胎生存的严重后果,与人类女性不孕症和线粒体替代疗法的重要相关性。

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