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Characterization of growth and reproduction performance transgene integration expression and transmission patterns in transgenic pigs produced by piggyBac transposition-mediated gene transfer

机译:通过piggyBac转座介导的基因转移产生的转基因猪的生长和繁殖性能转基因整合表达和传播模式的表征

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摘要

Previously we successfully produced a group of EGFP-expressing founder transgenic pigs by a newly developed efficient and simple pig transgenesis method based on cytoplasmic injection of piggyBac plasmids. In this study, we investigated the growth and reproduction performance, and characterized the transgene insertion, transmission and expression patterns in transgenic pigs generated by piggyBac transposition. Results showed that transgene has no injurious effect on the growth and reproduction of transgenic pigs. Multiple copies of monogenic EGFP transgene were inserted at noncoding sequences of host genome, and passed from founder transgenic pigs to their transgenic offspring in segregation or linkage manner. The EGFP transgene was ubiquitously expressed in transgenic pigs, and its expression intensity was associated with transgene copy number but not related to its promoter DNA methylation level. To the best of our knowledge, this is first study that fully described the growth and reproduction performance, transgene insertion, expression and transmission profiles in transgenic pigs produced by piggyBac system. It not only demonstrates that piggyBac transposition-mediated gene transfer is an effective and favourable approach for pig transgenesis, but also provides scientific information for understanding the transgene insertion, expression and transmission patterns in transgenic animals produced by piggyBac transposition.
机译:以前,我们通过基于piggyBac质粒细胞质注射的新开发的高效简单的猪转基因方法成功地生产了一组表达EGFP的奠基人转基因猪。在这项研究中,我们调查了生长和繁殖性能,并表征了通过piggyBac转座产生的转基因猪中的转基因插入,传递和表达模式。结果表明,转基因对转基因猪的生长和繁殖没有伤害作用。将多拷贝的单基因EGFP转基因插入宿主基因组的非编码序列,并以分离或连锁的方式从创始人转基因猪传给其转基因后代。 EGFP转基因在转基因猪中普遍表达,其表达强度与转基因拷贝数相关,但与启动子DNA甲基化水平无关。据我们所知,这是第一项研究,充分描述了通过piggyBac系统生产的转基因猪的生长和繁殖性能,转基因插入,表达和传播特性。它不仅证明了piggyBac转座介导的基因转移是猪转基因的有效途径,而且为了解piggyBac转座产生的转基因动物中的转基因插入,表达和传播方式提供了科学信息。

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