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Genetic Analysis of Maternal Functions in Drosophila

Genetic Analysis of Maternal Functions in Drosophila
果蝇母体功能的遗传分析
批准号:
9506237
负责人:
Norbert Perrimon
金额:
$18.47万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-09-01 至 1999-02-28

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中文摘要
翻译
小行星9506237 对细胞决定中早期事件的关键基因进行详细分析是理解早期发育机制的最佳方法之一。果蝇的胚胎发育需要母体和合子基因产物。为了鉴定控制特定胚胎模式化事件的基因,已经通过从雌性不育筛选中分离的突变检测了母本功能,而被母本储存的基因产物掩盖的合子功能和具有与胚前致死性相关的特定母本效应致死表型的基因座不能使用这两种方法鉴定。 为了表征这些位点的功能,Perrimon博士以前成功地使用了生殖系镶嵌技术。由于技术原因,这些分析仅限于X染色体,确定了大量在胚胎发育过程中发挥关键作用的新基因。该提案的目标是对位于第二和第三染色体(基因组的80%)上的与特定母体效应致死表型相关的所有合子致死突变进行近饱和筛选。这些实验将提供一个完整的描述过程的种类控制的母性活动的必要基因。此外,它们将为进一步详细分析在胚胎发生过程中操作的各种图案化系统提供基础。Perrimon博士的实验室将专注于新终末类基因的表征。此外,由于这些筛选将产生大量具有感兴趣表型的额外突变,因此突变体的集合将可用于果蝇群体。从这些研究中产生的丰富信息将有助于我们对果蝇胚胎模式形成机制的全面理解,并将确定果蝇基因组编码的遗传功能。 ***
英文摘要
9506237 Perrimon A detailed analysis of genes critical for early events in cellular determination is one of the best approaches to the understanding of the mechanics of early development. Embryonic development in Drosophila requires both maternal and zygotic gene products. To identify genes that control specific embryonic patterning events, maternal functions have been detected via mutations isolated from screens for female sterility, while zygotic functions which are masked by the maternally stored gene product and loci with specific maternal effect lethal phenotypes which are associated with pre- imaginal lethality cannot be identified using these two approaches. To characterize the function of such loci Dr. Perrimon has previously successfully used germline mosaic techniques. These analyses, which were limited to the X-chromosome for technical reasons, identified a large number of new genes that play critical roles during embryonic development. The goal of this proposal is to conduct near saturation screens for all zygotic lethal mutations located on the second and third chromosomes (80% of the genome) that are associated with specific maternal effect lethal phenotypes. These experiments will provide a complete description of the kinds of processes controlled by the maternal activity of essential genes. In addition, they will provide the foundation for further detailed analyses of various patterning systems that operate during embryogenesis. Dr. Perrimon's laboratory will focus on the characterization of new terminal class genes. In addition, since these screens will generate a large collection of additional mutations with interesting phenotypes, the collection of mutants will be made available to the fly community. The wealth of information generated from these studies will contribute to our general understanding of the mechanisms underlying embryonic pattern formation in Drosophila and will identify the genetic functions encoded by the Drosophila genome . ***
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