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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Analysis of the Bone Morphogenetic Protein-Related Gene, gbb, Identifies Multiple Requirements During Drosophila Development
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Genetic Analysis of the Bone Morphogenetic Protein-Related Gene, gbb, Identifies Multiple Requirements During Drosophila Development

机译:骨形态发生蛋白相关基因gbb的遗传分析,确定了果蝇发育过程中的多种需求

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We have isolated mutations in the Drosophila melanogaster gene glass bottom boat ( gbb ), which encodes a TGF-β signaling molecule (formerly referred to as 60A ) with highest sequence similarity to members of the bone morphogenetic protein (BMP) subgroup including vertebrate BMPs 5-8. Genetic analysis of both null and hypomorphic gbb alleles indicates that the gene is required in many developmental processes, including embryonic midgut morphogenesis, patterning of the larval cuticle, fat body morphology, and development and patterning of the imaginal discs. In the embryonic midgut, we show that gbb is required for the formation of the anterior constriction and for maintenance of the homeotic gene Antennapedia in the visceral mesoderm. In addition, we show a requirement for gbb in the anterior and posterior cells of the underlying endoderm and in the formation and extension of the gastric caecae. gbb is required in all the imaginal discs for proper disc growth and for specification of veins in the wing and of macrochaete in the notum. Significantly, some of these tissues have been shown to also require the Drosophila BMP2/4 homolog decapentaplegic ( dpp ), while others do not. These results indicate that signaling by both gbb and dpp may contribute to the development of some tissues, while in others, gbb may signal independently of dpp.
机译:我们在果蝇果蝇玻璃底船(gbb)中分离出突变,该突变编码一个TGF-β信号分子(以前称为60A),与包括脊椎动物BMPs在内的骨形态发生蛋白(BMP)亚组的成员具有最高的序列相似性5 -8。对无效gbb基因和亚型gbb等位基因的遗传分析表明,该基因在许多发育过程中都是必需的,包括胚胎中肠形态发生,幼虫角质层构图,脂肪体形态以及假牙盘的发育和构图。在胚胎中肠中,我们显示gbb是内脏中胚层前部狭窄形成和维持同源基因Antennapedia所需的。此外,我们显示出内胚层的前后细胞以及胃盲肠的形成和扩展中对gbb的需求。在所有的假想椎间盘中都需要gbb,以使椎间盘正常生长,并确定机翼中的静脉和三叉骨中的大毛象。值得注意的是,这些组织中的一些已显示还需要果蝇BMP2 / 4同系物去Cappleplegic(dpp),而其他组织则不需要。这些结果表明,由gbb和dpp发出的信号可能有助于某些组织的发育,而在另一些组织中,gbb可能独立于dpp发出信号。

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