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首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >Mlh1 is required for female fertility in Drosophila melanogaster: An outcome of effects on meiotic crossing over, ovarian follicles and egg activation
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Mlh1 is required for female fertility in Drosophila melanogaster: An outcome of effects on meiotic crossing over, ovarian follicles and egg activation

机译:果蝇在果蝇Melanogaster中的女性生育需要MLH1:卵巢卵泡和卵激活的减数分裂的影响

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摘要

Mismatch repair (MMR) system, a conserved DNA repair pathway, plays crucial role in DNA recombination and is involved in gametogenesis. The impact of alterations in MMR family of proteins (bacterial MutS and MutL homologues) on mammalian fertility is well documented. However, an insight to the role of MMR in reproduction of non-mammalian organisms is limited. Hence, in the present study, we analysed the impact of mlh1 (a MutL homologue) on meiotic crossing over/recombination and fertility in a genetically tractable model, Drosophila melanogaster. Using mlh1(e00130) hypomorphic allele, we report female specific adverse reproductive outcome for reduced mlhl in Drosophila: mlh1(e00130) homozygous females had severely reduced fertility while males were fertile. Further, mlh1(e00130) females contained small ovaries with large number of early stages as well as significantly reduced mature oocytes, and laid fewer eggs, indicating discrepancies in egg production and ovulation. These observations contrast the sex independent and/or male specific sterility and normal follicular development as well as ovulation reported so far for MMR family proteins in mammals. However, analogous to the role(s) of mlhl in meiotic crossing over and DNA repair processes underlying mammalian fertility, ovarian follicles from mlh1(e00130) females contained significantly increased DNA double strand breaks (DSBs) and reduced synaptonemal complex foci. In addition, large proportion of fertilized eggs display discrepancies in egg activation and fail to proceed beyond stage 5 of embryogenesis. Hence, reduction of the Mlh1 protein level leads to defective oocytes that fail to complete embryogenesis after fertilization thereby reducing female fertility.
机译:不匹配修复(MMR)系统,保守的DNA修复途径,在DNA重组中起着至关重要的作用,并参与配子发生。文献中,MMR系列蛋白质(细菌突变体和Mutl同源物)的改变的影响得到了很好的记录。然而,对MMR在非哺乳动物生物的繁殖中的作用有限的洞察。因此,在本研究中,我们分析了MLH1(MUTL同源物)对遗传途径模型果蝇模型中的减少体外过度/重组和生育的影响。使用MLH1(E00130)脱晶等位基因,我们报告了果蝇中减少的MLHL的女性特异性不良生殖结果:MLH1(E00130)纯合女性严重降低了生育率,同时雄性肥沃。此外,MLH1(E00130)雌性含有大量早期阶段的小卵巢以及显着降低的成熟卵母细胞,并占用较少的鸡蛋,表明鸡蛋生产和排卵中的差异。这些观察结果对比哺乳动物中MMR家族蛋白质的性别独立和/或男性特异性无菌和正常的滤窗发育以及令人遗憾的卵泡,以及排卵。然而,类似于哺乳动物生育能力下面的减数分裂的MLHL中的MLHL的作用,来自MLH1(E00130)的卵巢卵泡含有显着增加的DNA双链断裂(DSB)和减少的Sysaponemal Complex Foci。此外,大部分受精卵在卵子激活中显示出差异,并且不能超过胚胎发生的阶段5。因此,降低MLH1蛋白质水平导致卵母细胞的缺陷卵母细胞,其在受精后不能完全胚胎发生,从而减少女性生育率。

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