重组工程
转基因
细菌人工染色体
生物
遗传学
质粒
突变
黑腹果蝇
基因组
转座因子
转基因
DNA
插入突变
基因
计算生物学
突变
生殖技术
胚胎发生
作者
Koen J. T. Venken,Yuchun He,Ian Holmes,Hugo J. Bellen
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2006-12-01
卷期号:314 (5806): 1747-1751
被引量:782
标识
DOI:10.1126/science.1134426
摘要
We describe a transgenesis platform for Drosophila melanogaster that integrates three recently developed technologies: a conditionally amplifiable bacterial artificial chromosome (BAC), recombineering, and bacteriophage PhiC31-mediated transgenesis. The BAC is maintained at low copy number, facilitating plasmid maintenance and recombineering, but is induced to high copy number for plasmid isolation. Recombineering allows gap repair and mutagenesis in bacteria. Gap repair efficiently retrieves DNA fragments up to 133 kilobases long from P1 or BAC clones. PhiC31-mediated transgenesis integrates these large DNA fragments at specific sites in the genome, allowing the rescue of lethal mutations in the corresponding genes. This transgenesis platform should greatly facilitate structure/function analyses of most Drosophila genes.
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