首页> 美国卫生研究院文献>The Journal of Reproduction and Development >Effects of Trichostatin A on In Vitro Development and DNA Methylation Level of the Satellite IRegion of Swamp Buffalo (Bubalus bubalis) Cloned Embryos
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Effects of Trichostatin A on In Vitro Development and DNA Methylation Level of the Satellite IRegion of Swamp Buffalo (Bubalus bubalis) Cloned Embryos

机译:曲古他汀A对卫星I体外发育和DNA甲基化水平的影响沼泽水牛(Bubalus bubalis)克隆的胚胎区域

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摘要

Trichostatin A (TSA), a histone deacetylase inhibitor, has been widely used to improve the cloning efficiency in several species. This brings our attention to investigation of the effects of TSA on developmental potential of swamp buffalo cloned embryos. Swamp buffalo cloned embryos were produced by electrical pulse fusion of male swamp buffalo fibroblasts with swamp buffalo enucleated oocytes. After fusion, reconstructed oocytes were treated with 0, 25 or 50 nM TSA for 10 h. The results showed that there was no significant difference in the rates of fusion (82–85%), cleavage (79–84%) and development to the 8-cell stage (59–65%) among treatment groups. The highest developmental rates to the morula and blastocyst stages of embryos were found in the 25 nM TSA-treated group (42.7 and 30.1%, respectively). We also analyzed the DNA methylation level in the satellite I region of donor cells and in in vitro fertilized (IVF) and cloned embryos using the bisulfite DNA sequencing method. The results indicated that the DNA methylation levels in cloned embryos were significantly higher than those of IVF embryos but approximately similar to those of donor cells. Moreover, there was no significant difference in the methylation level among TSA-treated and untreated cloned embryos. Thus, TSA treatments at 25 nM for 10 h could enhance the in vitro developmental potential of swamp buffalo cloned embryos, but no beneficial effect on the DNA methylation level was observed.
机译:组蛋白脱乙酰基酶抑制剂曲古他汀A(TSA)已被广泛用于提高几种物种的克隆效率。这使我们注意研究TSA对沼泽水牛克隆胚胎发育潜力的影响。沼泽水牛克隆的胚胎是通过雄性沼泽水牛成纤维细胞与沼泽水牛去核卵母细胞电脉冲融合而产生的。融合后,将重建的卵母细胞用0、25或50 nM TSA处理10小时。结果表明,治疗组之间的融合率(82-85%),切割(79-84%)和发展到8细胞阶段(59-65%)没有显着差异。在25 nM TSA处理组中,发现胚胎的桑ula胚和胚泡期的最高发育率(分别为42.7和30.1%)。我们还使用亚硫酸氢盐DNA测序方法分析了供体细胞的卫星I区以及体外受精(IVF)和克隆胚胎的DNA甲基化水平。结果表明,克隆胚胎中的DNA甲基化水平显着高于IVF胚胎,但与供体细胞近似。而且,在经TSA处理和未经处理的克隆胚胎中,甲基化水平没有显着差异。因此,在25 nM下进行TSA处理10 h可以增强沼泽水牛克隆胚胎的体外发育潜能,但未观察到对DNA甲基化水平的有益影响。

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