首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >GENE DISRUPTIONS USING P TRANSPOSABLE ELEMENTS - AN INTEGRAL COMPONENT OF THE DROSOPHILA GENOME PROJECT [Review]
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GENE DISRUPTIONS USING P TRANSPOSABLE ELEMENTS - AN INTEGRAL COMPONENT OF THE DROSOPHILA GENOME PROJECT [Review]

机译:使用P易位元素的基因破坏-果蝇基因组项目的一个组成部分[综述]

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摘要

Biologists require genetic as well as molecular tools to decipher genomic information and ultimately to understand gene function, The Berkeley Drosophila Genome Project is addressing these needs with a massive gene disruption project that uses individual, genetically engineered P transposable elements to target open reading frames throughout the Drosophila genome. DNA flanking the insertions is sequenced, thereby placing an extensive series of genetic markers on the physical genomic map and associating insertions with specific open reading frames and genes, Insertions from the collection now lie within or near most Drosophila genes, greatly reducing the time required to identify new mutations and analyze gene functions. Information revealed from these studies about P element site specificity is being used to target the remaining open reading frames. [References: 38]
机译:生物学家需要遗传和分子工具来破译基因组信息并最终了解基因功能。伯克利果蝇基因组计划正在通过一个大规模的基因破坏计划来满足这些需求,该计划使用单独的,基因工程的P转座因子来靶向整个阅读框的开放阅读框。果蝇基因组。对插入序列两侧的DNA进行测序,从而在物理基因组图谱上放置一系列广泛的遗传标记,并将插入序列与特定的开放阅读框和基因相关联。现在,该集合中的插入序列位于大多数果蝇基因内或附近,大大减少了所需的时间识别新的突变并分析基因功能。这些研究揭示的有关P元素位点特异性的信息被用于靶向其余的开放阅读框。 [参考:38]

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