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首页> 外文期刊>Zygote >Microtubule and microfilament organization in immature, in vitro matured and in vitro fertilized prepubertal goat oocytes
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Microtubule and microfilament organization in immature, in vitro matured and in vitro fertilized prepubertal goat oocytes

机译:未成熟,体外成熟和体外受精的青春期前山羊卵母细胞中的微管和微丝组织

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摘要

The aim of our study was to analyse the cytoskeletal organization of prepubertal goat oocytes. Microtubule and microfilament organization during in vitro maturation of prepubertal and adult goat oocytes and presumptive zygotes of in vitro matured-in vitro fertilized (IVM-IVF) prepubertal goat oocytes were analysed. Oocytes were matured in M-199 with hormones and serum and inseminated with frozen-thawed spermatozoa. Oocytes and presumptive zygotes were treated with anti-alpha-tubulin antibody and fluorescein isothiocyanate (FITC)-labelled goat anti-mouse antibody to stain the microtubules. Microfilaments were localized by means of phalloidin 5 mu g/ml conjugated with fluorescein isothiocyanate (FITC-phalloidin). DNA was stained with propidium iodide. Stained oocytes were observed under a confocal laser scanning microscope. At the germinal vesicle nuclear stage, micro-filaments were distributed at the cortex of the oocytes. After in vitro maturation, 91.7% of metaphase 11 (MII) oocytes from adult goats displayed microfilaments in the cortex and within the polar body and were characterized by the presence of a microfilament thickening at the cortical region over the meiotic spindle. In prepubertal goat MII oocytes only 5.7% of oocytes displayed microfilaments at the cortex and within the polar body. After insemination, most of the zygotes displayed microfilaments distributed at the cortex. An undefined microtubular network was observed in adult and prepubertal goat oocytes at the germinal vesicle stage. After in vitro maturation, 100% of MII oocytes from adult goats displayed n-dcrotubules on the meiotic spindle and within the polar body. This pattern of distribution was observed in 71.6% of prepubertal goat oocytes. Undefined microtubule networks were present in most of the zygotes analysed. In conclusion, cytoskeletal differences were found between prepubertal and adult goat MII oocytes. Furthermore, most of the zygotes from IVM-IVF prepubertal goat oocytes displayed cytoskeletal anomalies.
机译:我们研究的目的是分析青春期前山羊卵母细胞的细胞骨架组织。分析了青春期前和成年山羊卵母细胞体外成熟过程中的微管和微丝组织,以及体外成熟-体外受精(IVM-IVF)青春期前山羊卵母细胞的推定受精卵。卵母细胞在具有激素和血清的M-199中成熟,并用冻融的精子进行授精。用抗α微管蛋白抗体和异硫氰酸荧光素(FITC)标记的山羊抗小鼠抗体处理卵母细胞和推定受精卵,以使微管染色。用与异硫氰酸荧光素(FITC-鬼笔环肽)缀合的5μg/ ml的鬼笔环肽定位微丝。 DNA用碘化丙啶染色。在共聚焦激光扫描显微镜下观察染色的卵母细胞。在生小泡核阶段,微丝分布在卵母细胞的皮层。在体外成熟后,成年山羊的91.7%的中期11(MII)卵母细胞在皮质和极体内显示出微丝,其特征是在减数分裂纺锤体的皮质区域存在增厚的微丝。在青春期前的山羊MII卵母细胞中,只有5.7%的卵母细胞在皮质和极体内部显示出微丝。授精后,大多数受精卵显示出分布在皮质的微丝。在成年小泡阶段,在成年和青春期前山羊卵母细胞中观察到未定义的微管网络。体外成熟后,成年山羊的MII卵母细胞100%在减数分裂纺锤体和极体内显示出n-小管。在青春期前的山羊卵母细胞中有71.6%观察到这种分布模式。分析的大多数受精卵中都存在未定义的微管网络。总之,在青春期前和成年山羊MII卵母细胞之间发现了细胞骨架的差异。此外,IVM-IVF青春期前山羊卵母细胞的大多数受精卵表现出细胞骨架异常。

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