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首页> 外文期刊>Theriogenology >Optimization of in vitro bovine embryo production: effect of duration of maturation, length of gamete co-incubation, sperm concentration and sire
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Optimization of in vitro bovine embryo production: effect of duration of maturation, length of gamete co-incubation, sperm concentration and sire

机译:体外牛胚生产的优化:成熟时间,配子共同孵育时间,精子浓度和父本的影响

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The aim of these experiments was to investigate the effect of duration of IVM, duration of gamete co-incubation, and of sperm dose on the development of bovine embryos in vitro. In addition, the speed of sperm penetration of six bulls of known differing in vivo and in vitro fertility was examined. In Experiment 1, following IVM for 16, 20, 24, 28 or 32 h, cumulus oocyte complexes (COCs) were inseminated with 1 X 10(6) spermatozoa/ml. After 24 h co-incubation, presumptive zygotes were denuded and placed in droplets of synthetic oviduct fluid (SCF). In Experiment 2, following IVM and IVF, presumptive zygotes were removed from fertilization wells at 1, 5, 10, 15 or 20 It post insemination and placed in culture as described above. In Experiment 3, following IVM, COCs were inseminated with sperm doses ranging from 0.01 X 106 to 1 X 10(6) spermatozoa/ml. Following co-incubation for 24 h, presumptive zygotes were placed in culture as described above. In Experiment 4, following IVM, oocytes were inseminated with sperm from six bulls of known differing field fertility. To assess the rate of sperm penetration, oocytes were subsequently fixed every 3 h (up to 18 h) following IVE Based on the results of Experiment 4, in Experiment 5, following IVM for 12, 18 or 24 h, COCs were inseminated with sperm from two sires with markedly different penetration speeds. After 24 h co-incubation, presumptive zygotes were denuded and placed in culture. The main findings from this study are that (1) the optimal duration of maturation of bovine oocytes in vitro to maximize blastocyst yield is 24 It, (2) sperm-oocyte co-incubation for 10 h is sufficient to ensure maximal blastocyst yields, (3) sperm concentrations of 0.25 x 10(6) and 0.5 x 10(6) spermatozoa/ml yielded significantly more blastocysts than any other concentration within the range of 0.01 X 10(6)- 1 X 10(6) spermatozoa/ml, (4) there are marked differences in the kinetics of sperm penetration between sires and this may be a useful predictor of field fertility, and (5) the inferior development associated with slower penetration rates may in part be overcome by carrying out IVF at a time when the actual penetration is most likely to coincide with the completion of maturation.
机译:这些实验的目的是研究IVM的持续时间,配子共孵育的持续时间以及精子剂量对体外牛胚胎发育的影响。此外,检查了六只已知体内和体外生殖能力不同的公牛的精子渗透速度。在实验1中,在IVM进行16、20、24、28或32小时后,用1 X 10(6)精子/ ml授精卵卵母细胞复合体(COC)。共温育24小时后,将假定的受精卵剥除,并置于合成输卵管液(SCF)的液滴中。在实验2中,在IVM和IVF之后,在授精后1、5、10、15或20从受精孔中移出假定的受精卵,并如上所述进行培养。在实验3中,在IVM之后,用0.01 X 106至1 X 10(6)精子/ ml范围内的精子剂量对COC进行授精。共孵育24小时后,如上所述将推定的受精卵置于培养物中。在实验4中,在IVM之后,用六只已知场肥力不同的公牛的精子对卵母细胞进行授精。为了评估精子穿透的速度,随后在IVE后每3小时(最多18小时)固定卵母细胞。根据实验4的结果,在实验5中,在IVM进行12、18或24小时后,将COC注入精子中来自具有不同穿透速度的两个父本。共孵育24小时后,剥去假定的受精卵并置于培养物中。这项研究的主要发现是:(1)牛卵母细胞体外成熟的最佳持续时间,以使胚泡产量最大化,(2)精卵-卵母细胞共孵育10 h足以确保胚泡最大产量,( 3)精子浓度为0.25 x 10(6)和0.5 x 10(6)/ ml的精囊比0.01 x 10(6)-1 x 10(6)精子/ ml范围内的任何其他浓度的胚泡明显多, (4)父亲之间精子穿透的动力学存在明显差异,这可能是预测田间繁殖力的有用指标,并且(5)一次进行IVF可以部分克服与较慢的穿透速度相关的劣质发育当实际渗透最有可能与成熟完成同时发生时。

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