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Sperm Nuclear Architecture Is Locally Modified in Presence of a Robertsonian Translocation t(13;17)

机译:精子核结构在罗伯逊易位t(13; 17)的存在下被局部修改。

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摘要

In mammals, the non-random organization of the sperm nucleus supports an early function during embryonic development. Altering this organization may interfere with the zygote development and reduce fertility or prolificity. Thus, rare studies on sperm cells from infertile patients described an altered nuclear organization that may be a cause or a consequence of their respective pathologies. Thereby, chromosomal rearrangements and aneuploidy can be studied not only for their adverse effects on production of normal/balanced gametes at meiosis but also for their possible impact on sperm nuclear architecture and the epigenetic consequences of altered chromosome positioning. We decided to compare the global architecture of sperm nuclei from boars, either with a normal chromosome composition or with a Robertsonian translocation involving chromosomes 13 and 17. We hypothesized that the fusion between these chromosomes may change their spatial organization and we examined to what extend it could also modify the global sperm nuclear architecture. Analysis of telomeres, centromeres and gonosomes repartition does not support a global nuclear disorganization. But specific analysis of chromosomes 13 and 17 territories highlights an influence of chromosome 17 for the positioning of the fused chromosomes within the nucleus. We also observed a specific clustering of centromeres depending of the chromosome subtypes. Altogether our results showed that chromosome fusion does not significantly alter sperm nucleus architecture but suggest that centromere remodelling after chromosome fusion locally impacts chromosome positioning.
机译:在哺乳动物中,精子核的非随机组织支持胚胎发育期间的早期功能。改变这种组织可能会干扰合子的发育并降低生育力或繁殖力。因此,对不育患者精子细胞的罕见研究描述了核组织的改变,这可能是其各自病理的原因或结果。因此,不仅可以研究染色体重排和非整倍性对减数分裂时正常/平衡配子产生的不利影响,还可以研究它们对精子核结构的可能影响以及染色体位置改变的表观遗传学后果。我们决定比较公猪的精子核的总体结构,无论是正常的染色体组成还是涉及13号和17号染色​​体的罗伯逊易位。我们假设这些染色体之间的融合可能改变其空间组织,并且我们研究了将其扩展的原因还可以改变全球的精子核结构。分析端粒,着丝粒和性腺的重新分配不支持全球核混乱。但是对13号和17号染色​​体区域的具体分析强调了17号染色​​体对融合染色体在核内定位的影响。我们还观察到着丝粒的特定聚类,具体取决于染色体亚型。总的来说,我们的结果表明染色体融合不会显着改变精子核的结构,但表明染色体融合后的着丝粒重塑会局部影响染色体的定位。

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