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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The genetic analysis of distributive segregation in Drosophila melanogaster. II. Further genetic analysis of the nod locus.
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The genetic analysis of distributive segregation in Drosophila melanogaster. II. Further genetic analysis of the nod locus.

机译:果蝇分布分离的遗传分析。二。点头基因座的进一步遗传分析。

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摘要

In Drosophila melanogster females the segregation of nonexchange chromosomes is ensured by the distributive segregation system. The mutation noda specifically impairs distributive disjunction and induces nonexchange chromosomes to undergo nondisjunction, as well as both meiotic and mitotic chromosome loss. We report here the isolation of seven recessive X-linked mutations that are allelic to noda. As homozygotes, all of these mutations exhibit a phenotype that is similar to that exhibited by noda homozygotes. We have also used these mutations to demonstrate that nod mutations induce nonexchange chromosomes to nondisjoin at meiosis II. Our data demonstrate that the effects of noda on meiotic chromosome behavior are a general property of mutations at the nod locus. Several of these mutations exhibit identical phenotypes as homozygotes and as heterozygotes with a deficiency for the nod locus; these likely correspond to complete loss-of-function or null alleles. None of these mutations causes lethality, decreases the frequency of exchange, or impairs the disjunction of exchange chromosomes in females. Thus, either the nod locus defines a function that is specific to distributive segregation or exchange can fully compensate for the absence of the nod+ function.
机译:在果蝇黑腹果蝇雌性中,非交换染色体的分离是通过分布分离系统来保证的。 noda突变特别损害分布分离,并诱导非交换染色体发生非分离,以及减数分裂和有丝分裂染色体均丢失。我们在这里报告了与noda等位基因的七个隐性X连锁突变的分离。作为纯合子,所有这些突变均表现出与野田纯合子相似的表型。我们还使用这些突变来证明nod突变诱导非交换染色体在减数分裂II时不分离。我们的数据表明,noda对减数分裂染色体行为的影响是nod位点突变的一般特性。这些突变中的几种表现出与纯合子和杂合子相同的表型,它们的nod基因座缺乏。这些可能对应于完全功能丧失或无效等位基因。这些突变均不会导致致死性,降低交换频率或损害雌性交换染色体的分离。因此,nod基因座定义了一个特定于分布分离或交换的功能,可以完全补偿nod +功能的缺失。

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