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秀丽隐杆线虫dpy-5 unc-13(I)基因组区域不育突变体的遗传分析。

Genetic analysis of sterile mutants in the dpy-5 unc-13 (I) genomic region of Caenorhabditis elegans.

作者信息

McDowall J S, Rose A M

机构信息

Department of Medical Genetics, University of British Columbia, Vancouver, Canada.

出版信息

Mol Gen Genet. 1997 Jun;255(1):60-77. doi: 10.1007/s004380050475.

Abstract

Essential genes were identified in the 1.5-map unit dpy-5 unc-13 region of chromosome I in the Caenorhabditis elegans genome by rescuing lethal mutations using the duplication sDp2. In this paper, we report the mapping and complementation testing of lethal mutations, 45 of which identify 18 new, essential genes. This analysis brings the number of essential genes defined by the sDp2 rescue of lethal mutants to 97; 64 of these map between dpy-5 and unc-13. 61% of these essential genes are identified by more than one allele. Positioning of the mutations was done using the breakpoints of six duplications. The mutant phenotypes of 14 loci essential for fertility were characterized by Nomarski microscopy and DAPI staining. None of the mutants were rescued by wild-type male sperm. The cytological data showed that four genes produced mutants with defects in gonadogenesis. let-395. let-603, let-605 and let-610. Mutations in seven genes, let-355, let-367, let-384, let-513, let-544, let-545 and let-606, affected germ cell proliferation or gametogenesis. Mutants for the remaining three genes, let-370, let-599 and let-604, produced eggs that failed to develop or hatch. thereby acting as maternal effect lethals. We observed a nonrandom distribution of arrest phenotypes with regard to map position.

摘要

通过使用重复片段sDp2挽救致死突变,在秀丽隐杆线虫基因组的I号染色体1.5个图距单位的dpy-5 unc-13区域鉴定出了必需基因。在本文中,我们报告了致死突变的定位和互补测试,其中45个致死突变鉴定出18个新的必需基因。该分析使通过sDp2挽救致死突变体所定义的必需基因数量达到97个;其中64个基因位于dpy-5和unc-13之间。这些必需基因中有61%是由多个等位基因鉴定出来的。利用六个重复片段的断点对突变进行定位。通过Nomarski显微镜和DAPI染色对14个生育必需位点的突变体表型进行了表征。没有一个突变体被野生型雄精子挽救。细胞学数据表明,四个基因产生了性腺发生缺陷的突变体,即let-395、let-603、let-605和let-610。七个基因let-355、let-367、let-384、let-513、let-544、let-545和let-606的突变影响生殖细胞增殖或配子发生。其余三个基因let-370、let-599和let-604的突变体产生的卵无法发育或孵化,从而表现为母体效应致死。我们观察到了关于图谱位置的停滞表型的非随机分布。

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