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慢病毒介导的牛生长素基因对小鼠胚胎发育的研究 被引量:1

Effect of Bovine GH Genes Mediated by Lentiviral Vectors on Mice Embryonic Development
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摘要 生长素是促进动物生长发育所必需的激素之一。本研究探索牛生长激素(bovine growth hormone,bGH)对小鼠胚胎发育的影响。将牛生长激素基因连接到慢病毒载体(Lenti-CMV-EF1-eGFP)形成Lenti-CMV-bGH/EF1-eGFP,重组病毒经293T细胞包装后直接感染小鼠胚胎和G1胚胎干细胞(embryonicstemcells,ESCs)。阳性表达的胚胎经体外培养,发育到囊胚期的胚胎进行胚胎移植,为直接感染组。感染的小鼠G1胚胎干细胞注射到正常昆明白小鼠囊胚制作嵌合胚胎后进行胚胎移植,为嵌合体组。分别解剖3只妊娠15d的直接感染组和嵌合组的小鼠,观察受体小鼠妊娠情况。结果发现,在1-细胞期感染胚胎,感染效率可达(74.7±6.7)%,在2-细胞期连续感染,感染效率为(79.4±5.7)%,两组感染方法的效率没有显著差异(P>0.05)。1次和2次感染胚胎发育和正常胚胎之间没有显著差异((87.6±3.5)%,(85.4±6.3)%VS(83.0±5.5)%,P>0.05)。所有移植的胚胎没有发育到足月,解剖妊娠15d的小鼠,发现直接感染组没有妊娠,嵌合组胎盘发育正常,但胚胎部分已经死亡和被吸收。因此,本研究证明bGH对小鼠附着前胚胎发育没有影响,但影响小鼠胚胎附着后的发育。这为后期bGH的研究提供参考。 Growth hormone (GH) is one of necessary hormones to promote growth and development of animals. In this study, the effects of bovine growth hormone (bGH) on mice embryonic development was investigated, bGH gene was linked to lentiviral vector Lenti-CMV-EFI-eGFP and get a recombinant vector Lenti-CMV-bGH/EF1 eGFP, then the reconstructed lentivirus was packaged by 293T cells. Mice embryos and G1 embryonic stem cells (ESCs) was infected with the reconstructed lentivirus. The positively infected embryos were cultured to blastocyst stage in vitro, then embryonic transfer was carried out, which was used as direct infection group; the positively infected ESCs were injected into normal Kunming white (KM) mice blastocysts to make chimerical embryos, then embryonic transfer was carried out, which was used as chimerical group. Three mice in direct infection group and three mice in chimerical group were anatomized after 15 days of embryonic transfer, and pregnant events were ob- served. The results showed that the infection efficiency was (74.7±6.7)% when the embryos were infected at l-cell stage, and the infection efficiency was (79.4±5.7)% when the embryos were infected from 1-cell stage to 2-cell stage, there was no significant difference between these two groups (P〉0.05), and the rate ofblastocyst development of these two groups were not significantly different from that of normal embryos ((87.6±3.5)% and (85.4±6.3)% VS (83.0±5.5)%, P〉0.05). There were no transferred embryos developing to term in both direct infection group and chimerical group. On 15 day of gestation, anatomy was performed in mice, no pregnant was found in direct infection group. Although the placenta was normal in chimerical group, fetus was dead and absorbed. Therefore, the results revealed that bGH does not impact the pre-implantation embryo development, but it could be harmful for post-implantation embryo development. The results can provide theoretical support and experimental basis for further research on bovine growth hormone.
出处 《基因组学与应用生物学》 CAS CSCD 北大核心 2013年第1期8-13,共6页 Genomics and Applied Biology
基金 国家自然科技基金(青年基金)(30900155) 自然科学基金(81070496) 陕西省教育厅基金(09JK785)资助
关键词 小鼠 牛GH基因 胚胎发育 转基因 生长素 Mice Bovine growth hormone Embryonic development Transgenesis Growth hormone
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