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In vitro production of cattle x buffalo hybrid embryos using cattle oocytes and African buffalo (Syncerus caffer caffer) epididymal sperm

机译:利用牛卵母细胞和非洲水牛附睾精子体外生产牛x水牛杂种胚

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摘要

Interspecies hybridization of bovids occurs between domestic cattle and at least three other species; American bison (Bison bison), yak (Bos grunniens) and banteng (Bos banteng). Birth of a cattlexbuffalo (Bubalus bubalis) hybrid has reportedly occurred in Russia and in China, but these reports were not authenticated. Such hybrids could be important in improving livestock production and management of diseases that impede production in tropical Africa. This study investigated hybridization between cattle and its closest African wild bovid relative, the African buffalo (Syncerus caffer caffer). In an attempt to produce cattlexbuffalo hybrid embryos in vitro, matured cattle oocytes were subjected to a standard in vitro fertilization (IVF) procedure with either homologous cattle (n =1166 oocytes) or heterologous African buffalo (n =1202 oocytes) frozen-thawed epididymal sperm. After IVF, 67.2% of the oocytes inseminated with the homologous cattle sperm cleaved. In contrast, fertilization with buffalo sperm resulted in only a 4.6% cleavage rate. The cleavage intervals were also slower in hybrid embryos than in the IVF-derived cattle embryos. Of the cleaved homologous cattle embryos 52.2% progressed to the morula stage compared with 12.7% for the buffalo hybrid embryos. No hybrid embryos developed beyond the early morula stage, while 40.1% of the cleaved cattlexcattle embryos developed to the blastocyst stage. Transfer of buffalo hybrid IVF embryos to domestic cattle surrogates resulted in no pregnancies at 60 days post-transfer. This study indicates that interspecies fertilization of cattle oocytes with African buffalo epididymal sperm can occur in vitro, and that a barrier to hybridization occurs in the early stages of embryonic development. Chromosomal disparity is likely the cause of the fertilization abnormalities, abnormal development and subsequent arrest impairing the formation of hybrid embryos beyond the early morula stage. Transfer of the buffalo hybrid embryos did not rescue the embryos from development arrest.
机译:牛的种间杂交发生在家养牛和至少三个其他物种之间;美洲野牛(Bison bison),牛(Bos grunniens)和班滕(Bos banteng)。据报道,牛和水牛(Bubalus bubalis)杂种的出生在俄罗斯和中国,但是这些报告未经证实。这种杂种对改善牲畜生产和控制热带非洲生产的疾病可能很重要。这项研究调查了牛与其最接近的非洲野生牛科近缘种非洲水牛(Syncerus caffer caffer)之间的杂交。为了尝试体外产生牛x水牛杂种胚,对成熟的牛卵母细胞进行标准的体外受精(IVF)程序,方法是使用同种牛(n = 1166卵母细胞)或异源非洲水牛(n = 1202卵母细胞)冷冻融化的附睾。精子。体外受精后,用同源牛精子授精的卵母细胞中有67.2%裂解了。相比之下,水牛精子的受精率仅为4.6%。在杂交胚胎中卵裂的间隔也比在体外受精的牛胚胎中的卵裂间隔慢​​。在裂开的同源牛胚胎中,有52.2%进入桑ula期,而水牛杂种胚胎则为12.7%。在桑ula虫早期以后没有杂种胚胎发育,而有裂痕的牛黄牛胚胎中有40.1%发育到胚泡阶段。将水牛杂种IVF胚胎转移到家养牛替代物中,导致在转移后60天没有怀孕。这项研究表明,非洲卵水牛附睾精子可以对牛卵母细胞进行种间受精,并且在胚胎发育的早期阶段就发生了杂交障碍。染色体差异很可能是受精异常,异常发育和随后的停滞的原因,从而损害了桑虫早期以后杂种胚胎的形成。水牛杂种胚胎的转移不能使胚胎免于发育停滞。

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