Stowers Institute for Medical Research, 1000 E. 50th Street, Kansas City, MO 64110, USA.
G3 (Bethesda). 2012 Nov;2(11):1369-77. doi: 10.1534/g3.112.003723. Epub 2012 Nov 1.
In an effort to isolate novel meiotic mutants that are severely defective in chromosome segregation and/or exchange, we employed a germline clone screen of the X chromosome of Drosophila melanogaster. We screened over 120,000 EMS-mutagenized chromosomes and isolated 19 mutants, which comprised nine complementation groups. Four of these complementation groups mapped to known meiotic genes, including mei-217, mei-218, mei-9, and nod. Importantly, we have identified two novel complementation groups with strong meiotic phenotypes, as assayed by X chromosome nondisjunction. One complementation group is defined by three alleles, and the second novel complementation group is defined by a single allele. All 19 mutants are homozygous viable, fertile, and fully recessive. Of the 9 mutants that have been molecularly characterized, 5 are canonical EMS-induced transitions, and the remaining 4 are transversions. In sum, we have identified two new genes that are defined by novel meiotic mutants, in addition to isolating new alleles of mei-217, mei-218, mei-9, and nod.
为了分离在染色体分离和/或交换方面严重缺陷的新型减数分裂突变体,我们对黑腹果蝇的 X 染色体进行了种系克隆筛选。我们筛选了超过 120000 个 EMS 诱变的染色体,分离出了 19 个突变体,这些突变体包含 9 个互补群。其中四个互补群映射到已知的减数分裂基因,包括 mei-217、mei-218、mei-9 和 nod。重要的是,我们已经鉴定了两个具有强减数分裂表型的新的互补群,通过 X 染色体不分离来测定。一个互补群由三个等位基因定义,第二个新的互补群由一个等位基因定义。所有 19 个突变体都是纯合的,可育的,完全隐性的。在已被分子特征分析的 9 个突变体中,5 个是典型的 EMS 诱导的转换,其余 4 个是颠换。总之,除了分离 mei-217、mei-218、mei-9 和 nod 的新等位基因外,我们还鉴定了两个新的由新型减数分裂突变体定义的基因。