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首页> 外文期刊>Development >Extensive zygotic control of the anteroposterior axis in the wasp Nasonia vitripennis.
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Extensive zygotic control of the anteroposterior axis in the wasp Nasonia vitripennis.

机译:黄蜂Nasonia vitripennis前后轴的广泛合子控制。

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Insect axis formation is best understood in Drosophila melanogaster, where rapid anteroposterior patterning of zygotic determinants is directed by maternal gene products. The earliest zygotic control is by gap genes, which determine regions of several contiguous segments and are largely conserved in insects. We have asked genetically whether early zygotic patterning genes control similar anteroposterior domains in the parasitoid wasp Nasonia vitripennis as in Drosophila. Nasonia is advantageous for identifying and studying recessive zygotic lethal mutations because unfertilized eggs develop as males while fertilized eggs develop as females. Here we describe recessive zygotic mutations identifying three Nasonia genes: head only mutant embryos have posterior defects, resembling loss of both maternal and zygotic Drosophila caudal function; headless mutant embryos have anterior and posterior gap defects, resembling loss of both maternal and zygotic Drosophila hunchback function; squiggy mutant embryos develop only four full trunk segments, a phenotype more severe than those caused by lack of Drosophila maternal or zygotic terminal gene functions. These results indicate greater dependence on the zygotic genome to control early patterning in Nasonia than in the fly.
机译:在果蝇中最好地了解昆虫轴的形成,在果蝇中,合子决定簇的快速前后模式由母体基因产物指导。最早的合子控制是通过空缺基因进行的,该基因决定了几个连续区段的区域,并且在昆虫中基本上是保守的。我们已经从遗传学上询问了早期的合子构图基因是否控制了与果蝇中的拟寄生蜂黄蜂Nasonia vitripennis中相似的前后域。 Nasonia有利于鉴定和研究隐性合子致死突变,因为未受精卵发育为雄性,而未受精卵发育为雌性。在这里,我们描述了隐性合子突变,该突变鉴定了3个Nasonia基因:仅头部突变的胚胎具有后部缺陷,类似于母体和合子果蝇尾功能的丧失;无头突变体胚胎具有前后间隙缺陷,类似于母本和合子果蝇驼背功能的丧失;蠕动的突变体胚胎仅发育四个完整的躯干节段,其表型比果蝇缺乏母系或合子末端基因功能所引起的突变更严重。这些结果表明,与野生蝇相比,Nasonia对合子基因组控制早期模式的依赖性更大。

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