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果蝇中的基因活性与体节模式形成:奇跳基因和成对规则双突变体的分析

Gene activities and segmental patterning in Drosophila: analysis of odd-skipped and pair-rule double mutants.

作者信息

Coulter D E, Wieschaus E

机构信息

Department of Biology, Princeton University, New Jersey 08544.

出版信息

Genes Dev. 1988 Dec;2(12B):1812-23. doi: 10.1101/gad.2.12b.1812.

Abstract

The odd-skipped (odd) gene is required to generate anterior regions of the odd-numbered segments in Drosophila; homozygous embryos show pattern deletions that are always less than a segment in width and are associated with mirror-image duplications of adjacent regions. To define further the role of odd and determine how it interacts with other segmentation genes, we have described the effects of combining odd with mutations at other pair-rule loci. We have observed phenotypic suppression in double-mutant combinations with even-skipped (eve), paired, sloppy paired, and engrailed (en). In the most thoroughly characterized combination (odd eve), both naked cuticle and specific denticle rows are restored that would normally have been deleted by one of the two mutants alone. In the odd en double mutant, we observe nearly complete suppression of the odd phenotype, such that the mirror image duplications are eliminated and the odd-numbered denticle bands are restored. We conclude that the requirements of pattern elements for specific gene activities are not absolute, and propose mechanisms by which these genes interact to specify cell fates.

摘要

奇数跳节(odd)基因对于果蝇奇数节段前部区域的生成是必需的;纯合胚胎表现出模式缺失,其宽度总是小于一个节段,并与相邻区域的镜像重复相关。为了进一步明确odd的作用并确定它如何与其他分节基因相互作用,我们描述了将odd与其他成对规则基因座的突变相结合的影响。我们在与偶数跳节(eve)、配对、草率配对和 engrailed(en)的双突变组合中观察到了表型抑制。在特征最充分的组合(odd eve)中,裸表皮和特定的齿列得以恢复,而这些通常会被两个突变体中的一个单独删除。在odd en双突变体中,我们观察到odd表型几乎完全被抑制,从而消除了镜像重复并恢复了奇数齿带。我们得出结论,模式元件对特定基因活性的需求并非绝对,并提出了这些基因相互作用以指定细胞命运的机制。

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