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果蝇无脊椎 - 触角足基因与触角足复合体及双胸复合体基因之间的相互作用。

Interaction between spineless-aristapedia gene and genes from Antennapedia and bithorax complexes of Drosophila melanogaster.

作者信息

Kuzin B, Doszhanov K, Mazo A

机构信息

N.K.Kol'tsov Institute of Developmental Biology, Russian Academy of Sciences, Moscow.

出版信息

Int J Dev Biol. 1997 Dec;41(6):867-75.

PMID:9449463
Abstract

Mutations in the spineless-aristapedia (ssa) gene of Drosophila melanogaster are pleiotropic, and their classical manifestations include a reduction in size of all bristles (spineless phenotype), transformation of distal parts of antennae into tarsal segments of the mesothoracic leg (aristapedia phenotype), and, in extreme alleles, fusion of tarsal segments on all six legs and the transformed aristaes. We isolated a new allele, which is a severe loss-of-function mutation and, in addition to the above-mentioned features, is characterized by amplification of sex combs on the first leg. This phenotype can be caused by a change in the expression of the Sex combs reduced (Scr) gene of the ANTP-C. Identification of this phenotype, together with observed variations in the extent of the fusion of tarsal segments in the legs of different segments, raised the possibility that ssa interacts with homeotic genes controlling the identity of segments. This possibility was tested in genetical experiments using flies with loss-of-function mutations in several homeotic genes and flies transformed by heat shock-driven homeotic genes. Analysis of adult phenotypes of different ssa alleles in the background of under-, over-, or ectopic expression of some genes of BX-C and ANT-C suggests that the ssa product is required to prevent the effect of the homeotic gene products in the distal segments of the appendages.

摘要

黑腹果蝇无刺芒基因(ssa)的突变具有多效性,其典型表现包括所有刚毛尺寸减小(无刺表型)、触角远端部分转变为中胸腿的跗节(芒状触角表型),以及在极端等位基因中,六条腿上的跗节融合和触角转变。我们分离出一个新的等位基因,它是一个严重的功能丧失突变,除了上述特征外,还表现为第一腿上性梳的扩增。这种表型可能是由ANT-C的性梳减少(Scr)基因表达变化引起的。这种表型的鉴定,以及在不同节段腿上观察到的跗节融合程度的变化,增加了ssa与控制节段身份的同源异型基因相互作用的可能性。在遗传实验中,使用了几个同源异型基因功能丧失突变的果蝇和热休克驱动的同源异型基因转化的果蝇来测试这种可能性。在BX-C和ANT-C的一些基因的表达不足、过度表达或异位表达背景下,对不同ssa等位基因的成虫表型分析表明,ssa产物是防止同源异型基因产物在附肢远端节段产生作用所必需的。

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