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Techniques for Imaging Prometaphase and Metaphase of Meiosis I in Fixed Drosophila Oocytes

机译:果蝇固定卵母细胞减数分裂I的前中期和中期成像技术

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摘要

Chromosome segregation in human oocytes is error prone, resulting in aneuploidy, which is the leading genetic cause of miscarriage and birth defects. The study of chromosome behavior in oocytes from model organisms holds much promise to uncover the molecular basis of the susceptibility of human oocytes to aneuploidy. Drosophila melanogaster is amenable to genetic manipulation, with over 100 years of research, community, and technique development. Visualizing chromosome behavior and spindle assembly in Drosophila oocytes has particular challenges, however, due primarily to the presence of membranes surrounding the oocyte that are impenetrable to antibodies. We describe here protocols for the collection, preparation, and imaging of meiosis I spindle assembly and chromosome behavior in Drosophila oocytes, which allow the molecular dissection of chromosome segregation in this important model organism.
机译:人卵母细胞中的染色体分离容易出错,导致非整倍性,这是流产和出生缺陷的主要遗传原因。对来自模型生物的卵母细胞中染色体行为的研究具有广阔的前景,有望揭示人类卵母细胞对非整倍性敏感性的分子基础。果蝇(Drosophila melanogaster)具有100多年的研究,社区和技术开发经验,适合进行基因操作。然而,果蝇卵母细胞中的染色体行为和纺锤体组装的可视化面临特别的挑战,这主要是由于卵母细胞周围的膜无法穿透抗体。我们在这里描述了用于在果蝇卵母细胞中进行减数分裂I纺锤体装配和染色体行为的收集,制备和成像的协议,这些协议允许在这种重要的模型生物中进行染色体分离的分子解剖。

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