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Genetic characteristics of polycistronic system-mediated randomly-inserted multi-transgenes in miniature pigs and mice

机译:小型猪和小鼠中多顺反子系统介导的随机插入的多转基因的遗传特性

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摘要

Multi-transgenic technology is superior to single transgenic technology in biological and medical research. Multi-transgene insertion mediated by a polycistronic system is more effective for the integration of polygenes. The multi-transgene insertion patterns and manners of inheritance are not completely understood. Copy number quantification is one available approach for addressing this issue. The present study determined copy numbers in two multi-transgenic mice (K3 and L3) and two multi-transgenic miniature pigs (Z2 and Z3) using absolute quantitative polymerase chain reaction analysis. For the F0 generation, a given transgene was able to exhibit different copy number integration capacities in different individuals. For the F1 generation, the most notable characteristic was that the copy number proportions were different among pedigrees (P<0.05). The results of the present study demonstrated that transgenes within the same vector exhibited the same integration trend between the F0 and F1 generations. In conclusion, intraspecific consistency and intergenerational copy numbers were compared and the integration capacity of each specific transgene differed in multi-transgenic animals. In particular, the copy number of one transgene may not be used to represent other transgenes in polycistronic vector-mediated multi-transgenic organisms. Consequently, in multi-transgenic experimental animal disease model research or breeding, copy numbers provide an important reference. Therefore, each transgene in multi-transgenic animals must be separately screened to prevent large copy number differences, and inconsistent expression between transgenes and miscellaneous data, in subsequent research.
机译:在生物学和医学研究中,多转基因技术优于单转基因技术。由多顺反子系统介导的多转基因插入对于多基因的整合更有效。尚未完全了解多转基因的插入方式和遗传方式。拷贝数量化是解决此问题的一种可用方法。本研究使用绝对定量聚合酶链反应分析确定了两只多转基因小鼠(K3和L3)和两只多转基因小型猪(Z2和Z3)的拷贝数。对于F0代,给定的转基因能够在不同个体中展现出不同的拷贝数整合能力。对于F1代,最显着的特征是谱系之间的拷贝数比例不同(P <0.05)。本研究的结果表明,同一载体内的转基因在F0和F1代之间表现出相同的整合趋势。总之,在多转基因动物中,比较了种内一致性和世代间拷贝数,每种特异性转基因的整合能力也有所不同。特别地,在多顺反子载体介导的多转基因生物中,一个转基因的拷贝数不能用于代表其他转基因。因此,在多转基因实验动物疾病模型的研究或育种中,拷贝数提供了重要的参考。因此,在随后的研究中,必须分别筛选多转基因动物中的每个转基因,以防止大量拷贝数差异以及转基因与其他数据之间的不一致表达。

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