核基质附着区(MAR)调控的人胰岛素样生长因子(hIGF-1)转基因兔的制备  

Production of Transgenic Rabbit with hIGF1 cDNA Regulated by Matrix Attachment Region

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作  者:葛宝生[1,2,3,4] 朱裕鼎[1,2,3,4] 陈永福[1,2,3,4] 沈孝宙 安民[1,2,3,4] 

机构地区:[1]中国农业大学动物科技学院 [2]解放军农牧大学畜牧水产系 [3]中国农业科学院畜牧研究所 [4]中国科学院动物研究所

出  处:《中国兽医学报》1997年第6期521-525,共5页Chinese Journal of Veterinary Science

基  金:国家"八六三"生物技术计划资助

摘  要:用EcoRI+HindⅢ双酶解含鸡α-珠蛋白基因5′端核基质附着区(MAR)、小鼠金属硫蛋白基因启动子(MT-1)和人胰岛素样生长因子-1(hIGF-1)基因的pMTSMCAG质粒,0.6%琼脂糖凝胶电泳,玻璃乳回收纯化MAR/MT/hIGF-1片段(3.9kb),用该片段制备转基因兔。利用水平显微注射系统注射1-细胞兔胚胎468枚,移植到36只受体兔,有8只妊娠,共产下19只活仔兔。采仔兔耳样提取基因组DNA,应用PCR技术分析其外源基因整合情况,获得8只阳性兔(显示出约600bp外源DNA条带)。再对8只阳性兔的PCR产物进行Southern印迹杂交,得到5只整合有MAR/MT/hIGF-1外源基因的转基因兔,转基因整合率为26.3%(5/19)。用1只阳性转基因公兔(502号)繁殖了6窝,共获得42只仔兔。采仔兔耳样提取基因组DNA后,如上用PCR分析和做Southern印迹杂交,F1代中有5只整合有MAR/MT/hIGF-1融合基因。A 3.9 kb fragment digested with Eco RI and Hind Ⅲ was isolated from agarose Gel using Glass MAXMatrix isolation kits. This fragment, which consists of the chickenalpha globin gene(5′MAR), mousemetallothionein1 (promoter) and human insulinlike growth factor1, was microinjected into male pronuclei of 468 rabbit 1cell embryos, and injected embryos were transferred into the oviduct of 36 recipients. Eight rabbits of 36 recipients were pregnant and 19 live offsprings born. Genomic DNA was extracted from ear specimens of rabbits (F0) and amplified with a pair of primerMP1 and MP2 by polymerase chain reaction to analyze the integration of foreign gene. A specific band of 600 bp foreign DNA present in eight transgenic positive rabbits through PCR screening. Five of eight positive rabbits proved to be transgenic rabbit for MAR/MT/hIGF1 fusion gene based on Southern hybridization analysis, giving an integration rate of 26.3% (5/19). 42 young (F1) were generated by one male transgenic rabbit (number 502) servicing 6 nontransgenic female rabbits. PCR products from young′s genomic DNA identified by southern blot indicated that five of 42 F1 rabbits were transgenic rabbits integrated MAR/MT/hIGF1.

关 键 词:核基质附着区 人胰岛素样 生长因子 转基因兔 

分 类 号:Q78[生物学—分子生物学] S829.1[农业科学—畜牧学]

 

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