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对黑腹果蝇两个位点突变的遗传学研究,这些突变会导致多种同源异型转化。

Genetic studies of mutations at two loci of Drosophila melanogaster which cause a wide variety of homeotic transformations.

作者信息

Shearn Allen, Hersperger Evelyn, Hersperger Grafton

机构信息

Department of Biology, The Johns Hopkins University, 21218, Baltimore, Maryland, USA.

出版信息

Rouxs Arch Dev Biol. 1987 Apr;196(4):231-242. doi: 10.1007/BF00376347.

Abstract

The ash-1 locus is in the proximal region of the left arm of the third chromosome of Drosophila melanogaster and the ash-2 locus is in the distal region of the right arm of the third chromosome. Mutations at either locus can cause homeotic transformations of the antenna to leg, proboscis to leg and/or antenna, dorsal prothorax to wing, first and third leg to second leg, haltere to wing, and genitalia to leg and/or antenna. Mutations at the ash-1 locus cause, in addition, transformations of the posterior wing and second leg to anterior wing and second leg, respectively. A similar spectrum of transformations is caused by mutations at yet another third chromosome locus, trithorax. One extraordinary aspect of mutations at all three of these loci is that they cause such a wide variety of transformations. For mutations at both of the loci that we have studied the expression of the homeotic phenotype is both disc-autonomous (as shown by injecting mutant discs into metamorphosing larvae) and cell autonomous (as shown by somatic recombination analysis). The original mutations which identified these two loci, although lethal, manifest variable expressivity and incomplete penetrance of the homeotic phenotype suggesting that they are hypomorphic. The phenotype of double mutants which were synthesized by combining different pairs of those original mutations manifest for two of the four pairs a greater degree of expressivity and slightly more penetrance of the homeotic transformations. This mutual enhancement suggests that the products of both loci interact in the same process. A third double mutant expresses a discless phenotype.Additional alleles have been recovered at both the ash-1 and the ash-2 loci. Some of these alleles as homozygotes or transheterozygotes express the wide range of transformations revealed first by double mutants. One of the alleles at the ash-1 locus when homozygous and several transheterozygous pairs can cause either the homeotic transformation of discs or the absence of those discs. The fact that these two defects, absence of specific discs and homeotic transformations of those same discs can be caused by mutations within a single gene suggests that the activity of the product of this gene is essential for normal imaginal disc cell proliferation. Loss of that activity leads to the absence of discs, whereas, reduction of that activity leads to homeotic transformations.

摘要

ash-1基因座位于黑腹果蝇第三号染色体左臂的近端区域,而ash-2基因座位于第三号染色体右臂的远端区域。任一基因座发生突变都可能导致触角向腿、喙向腿和/或触角、前胸背板向翅、第一和第三条腿向第二条腿、平衡棒向翅以及生殖器向腿和/或触角的同源异型转变。此外,ash-1基因座发生突变还会分别导致后翅和第二条腿向前翅和第二条腿的转变。另一个位于第三号染色体上的基因座——三体胸(trithorax)发生突变也会引起类似的一系列转变。这三个基因座发生的突变的一个非凡之处在于它们会导致如此多种多样的转变。对于我们研究的两个基因座的突变,同源异型表型的表达既是盘自主性的(通过将突变盘注射到变态幼虫中显示)也是细胞自主性的(通过体细胞重组分析显示)。最初鉴定这两个基因座的突变虽然是致死性的,但表现出可变的表达度和同源异型表型的不完全外显率,表明它们是亚效等位基因。通过组合不同的原始突变对合成的双突变体的表型,对于四对中的两对,同源异型转变表现出更高程度的表达度和稍高一些的外显率。这种相互增强表明两个基因座的产物在同一过程中相互作用。第三个双突变体表现出无盘表型。在ash-1和ash-2基因座都发现了其他等位基因。其中一些等位基因作为纯合子或反式杂合子表现出最初由双突变体揭示的广泛转变。ash-1基因座的一个等位基因纯合时以及几个反式杂合对会导致盘的同源异型转变或那些盘的缺失。同一个基因内的突变能够导致这两种缺陷,即特定盘的缺失和那些相同盘的同源异型转变,这一事实表明该基因产物的活性对于正常成虫盘细胞增殖至关重要。该活性的丧失导致盘的缺失,而该活性的降低导致同源异型转变。

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