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转磷酸甘露糖变位酶基因提高水稻维生素C含量 被引量:3
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作者 高利芬 夏志辉 +2 位作者 张继 王道文 翟文学 《中国水稻科学》 CAS CSCD 北大核心 2016年第4期441-446,共6页
维生素C(VC)是人体健康所必需的营养元素。人类由于缺乏VC合成途径中的最后一种酶(L-古洛糖酸内酯氧化酶),自身不能合成VC。水稻是重要的粮食作物,增加水稻种子中VC含量,能够提高其营养价值。磷酸甘露糖变位酶(PMM)是VC合成通路... 维生素C(VC)是人体健康所必需的营养元素。人类由于缺乏VC合成途径中的最后一种酶(L-古洛糖酸内酯氧化酶),自身不能合成VC。水稻是重要的粮食作物,增加水稻种子中VC含量,能够提高其营养价值。磷酸甘露糖变位酶(PMM)是VC合成通路中一种重要的酶,催化甘露糖-6-磷酸到甘露糖-1-磷酸的转变。将水稻PMM基因(OsPMM)构建在双右边界双元载体pMNDRBBin6上,并用种子特异表达的启动子BX14驱动其表达。通过农杆菌介导的转化系统,OsPMM基因被转入粳型三系恢复系C418中。通过分子检测,在T2代筛选到了无选择标记的转基因植株。对OsPMM基因在转基因植株中的表达进行分析,发现OsPMM基因在转基因水稻种子内的表达水平明显提高,相应地,转基因系种子中的VC含量也提高了25%-50%。 展开更多
关键词 维生素c 磷酸甘露糖变位酶 双右边界双元载体系统 无选择标记 转基因系
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人c-myc转基因细胞的建立
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作者 吴红 张成香 李厚达 《生物技术》 CAS CSCD 2006年第3期22-25,共4页
目的:建立人c-myc转基因细胞。方法:通过成功构建c-myc逆转录病毒表达载体,并经脂质体介导转染包装细胞293T,收集产重组病毒的293T培养上清,运用NIH3T3细胞测定了病毒滴度,用适当浓度的病毒感染L929细胞,经用Zeocin选择性培养基筛选细... 目的:建立人c-myc转基因细胞。方法:通过成功构建c-myc逆转录病毒表达载体,并经脂质体介导转染包装细胞293T,收集产重组病毒的293T培养上清,运用NIH3T3细胞测定了病毒滴度,用适当浓度的病毒感染L929细胞,经用Zeocin选择性培养基筛选细胞。结果:得到稳定高表达c-myc基因的L929转基因细胞。结论:运用逆转录病毒转染法可得到高表达的转基因细胞。 展开更多
关键词 逆转录病毒载体 c-MYc 转基因
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Regulation of Expression for the RNP-4F Splicing Assembly Factor in the Fruit-Fly <i>Drosophila melanogaster</i>
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作者 Sushmita Ghosh Shelby E. Thomas +1 位作者 Lindsey M. Abraham Jack C. Vaughn 《Open Journal of Animal Sciences》 2015年第4期418-428,共11页
Intron splicing in eukaryotic organisms requires the interactions of five snRNAs and numerous different proteins in the spliceosome. Although the molecular mechanism behind splicing has been well studied, relatively l... Intron splicing in eukaryotic organisms requires the interactions of five snRNAs and numerous different proteins in the spliceosome. Although the molecular mechanism behind splicing has been well studied, relatively little is known about regulation of expression for these splicing factor proteins. One of these proteins is the evolutionarily-conserved Drosophila RNP-4F splicing assembly factor. This protein is transcribed from a single gene into two developmentally regulated mRNAs that differ in their 5’-UTR structure. In the longer isoform, known to be abundant in the developing fly central nervous system, a conserved retained intron which folds into a stem-loop has been implicated in expression control of the mRNA. Here, we describe construction and utilization of several new rnp-4f gene expression study vectors using a GFP reporter in the ΦC31 system. The results confirm our previous observation that presence of the regulatory stem-loop enhances RNP-4F protein expression. However, in that study, the enhancement factor protein was not identified. We show here that overexpression of the RNP-4F transgene compared to the control results in additional translation, as indicated by the GFP reporter in the fluorescent images. These results are interpreted to show that RNP-4F protein acts back on its own mRNA 5’-UTR regulatory region via a feedback pathway to enhance protein synthesis in the developing fly central nervous system. A model is proposed to explain the molecular mechanism behind rnp-4f gene expression control. 展开更多
关键词 rnp-4f GENE GENE Expression control φc31 transgenic vectors UAS-GAL4 System Fluorescence Microscopy
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