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Transfection and expression of exogenous gene in laying hens oviduct in vitro and in vivo*

机译:蛋鸡输卵管体内外转染及外源基因表达*

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摘要

To examine whether or not the regulatory sequence of chicken ovalbumin gene can drive transgene expression specifically in hen oviduct, the authors constructed an oviduct-specific expression vector (pOV), containing 3.0 kilobases (kb) of the 5′-flanking sequence and 3.0 kb of the 3′-flanking sequence of the chicken ovalbumin gene. Jellyfish green fluorescence protein (EGFP) reporter gene and bacterial LacZ reporter gene were respectively inserted into the downstream of the 5′-regulatory region. The recombinants were named as pOVEGFP and pOVLacZ. Two transfer systems, in vitro and in vivo, were used to verify the function of the vector. In vitro, the plasmid DNA pOVEGFP and pEGFP-N1 were transfected respectively by the polyethyleneimine procedure into the primary chicken oviduct epithelium (PCOE) and fibroblasts cells isolated from laying hens. In vivo, the recombinant vector pOVLacZ was injected into egg-laying hens via wing vein and the tissues were collected for RT-PCR analysis. The results showed that expression of pEGFP-N1 was achieved at low level in oviduct epithelial cells and at high level in fibroblasts, but that the recombinant vector was not expressed in both cells. RT-PCR analysis showed that the LacZ gene was transcribed in the oviduct, but not in the heart, liver, kidney and spleen of the injected hens. Accordingly, the β-galactosidase activity was only detected in the oviduct magnum (116.7 mU/ml) and eggs (16.47 mU/ml). These results indicated that the cloned regulation regions of chicken ovalbumin gene could drive exogenous gene expression specifically in the oviducts of hens. In vivo gene injection via wing vein may serve as a rapid production system of recombinant proteins in chicken eggs. In addition, the cultured primary oviduct cells from laying hens were not efficient temporary expression systems for analyzing the function of regulating elements of ovalbumin gene.
机译:为了检查鸡卵白蛋白基因的调控序列是否可以特异性地驱动输卵管中的转基因表达,作者构建了一个输卵管特异性表达载体(pOV),该载体包含5'侧翼序列的3.0 kb(kb)和3.0 kb卵清蛋白基因3'侧翼序列的序列将水母绿色荧光蛋白(EGFP)报道基因和细菌LacZ报道基因分别插入5'调节区的下游。将该重组体命名为pOVEGFP和pOVLacZ。体外和体内两种转移系统用于验证载体的功能。在体外,通过聚乙烯亚胺方法将质粒DNA pOVEGFP和pEGFP-N1分别转染到初级鸡输卵管上皮(PCOE)和从蛋鸡中分离的成纤维细胞。在体内,通过翼静脉将重组载体pOVLacZ注射到产蛋母鸡中,并收集组织用于RT-PCR分析。结果表明,pEGFP-N1在输卵管上皮细胞中低水平表达,在成纤维细胞中高水平表达,但重组载体在两种细胞中均未表达。 RT-PCR分析表明,LacZ基因在输卵管中转录,但在鸡的心脏,肝脏,肾脏和脾脏中未转录。因此,仅在大输卵管(116.7mU / ml)和卵(16.47mU / ml)中检测到β-半乳糖苷酶活性。这些结果表明,克隆的鸡卵清蛋白基因调控区可以特异性地驱动母鸡输卵管中的外源基因表达。通过翼静脉的体内基因注射可以用作鸡蛋中重组蛋白的快速生产系统。此外,培养的蛋鸡初级输卵管细胞不是分析卵清蛋白基因调节元件功能的有效临时表达系统。

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