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黑腹果蝇背侧-双尾-D区域的遗传学

The genetics of the dorsal-Bicaudal-D region of Drosophila melanogaster.

作者信息

Steward R, Nüsslein-Volhard C

出版信息

Genetics. 1986 Jul;113(3):665-78. doi: 10.1093/genetics/113.3.665.

Abstract

The chromosomal region 36C on 2L contains two maternal-effect loci, dorsal (dl) and Bicaudal-D (Bic-D), which are involved in establishing polarity of the Drosophila embryo along the dorsal-ventral and anterior-posterior axes, respectively. To analyze the region genetically, we isolated X-ray-induced dorsal alleles, which we recognized by virtue of the haplo-insufficient temperature-sensitive dorsal-dominant phenotype in progeny of single females heterozygous for a mutagenized chromosome. From the 20,000 chromosomes tested, we isolated three deficiencies, two inversions with breakpoint in dl and one apparent dl point mutant. One of the deficiencies, Df(2L)H20 (36A6,7; 36F1,2) was used to screen for EMS-induced lethal- and maternal-effect mutants mapping in the vicinity of dl and Bic-D. We isolated 44 lethal mutations defining 11 complementation groups. We also recovered as maternal-effect mutations four dl alleles, as well as six alleles of quail and one allele of kelch, two previously identified maternal-effect genes. Through complementation tests with various viable mutants and deficiencies in the region, a total of 18 loci were identified in an interval of about 30 cytologically visible bands. The region was subdivided into seven subregions by deficiency breakpoints. One lethal complementation group as well as the two maternal loci, Bic-D and quail, are located in the same deficiency interval as is dl.

摘要

位于第二大染色体左臂的36C染色体区域包含两个母体效应基因座,背侧(dl)和双尾-D(Bic-D),它们分别参与果蝇胚胎沿背腹轴和前后轴建立极性。为了从遗传学角度分析该区域,我们分离了X射线诱导的背侧等位基因,通过单只雌性果蝇后代中半合子不足的温度敏感型背侧显性表型来识别这些等位基因,这些雌性果蝇对诱变染色体呈杂合状态。在检测的20,000条染色体中,我们分离出三个缺失、两个在dl处有断点的倒位以及一个明显的dl点突变。其中一个缺失,Df(2L)H20(36A6,7;36F1,2)被用于筛选在dl和Bic-D附近定位的EMS诱导的致死和母体效应突变体。我们分离出44个致死突变,定义了11个互补群。我们还获得了四个作为母体效应突变的dl等位基因,以及鹌鹑的六个等位基因和kelch的一个等位基因,kelch是两个先前鉴定的母体效应基因。通过与该区域各种存活突变体和缺失进行互补测试,在大约30个细胞学可见带的区间内共鉴定出18个基因座。该区域通过缺失断点被细分为七个子区域。一个致死互补群以及两个母体基因座,Bic-D和鹌鹑,与dl位于相同的缺失区间。

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