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构巢曲霉中低重组和高重组mus突变体的表型和上位性分组

Phenotypic and epistatic grouping of hypo- and hyper-rec mus mutants in Aspergillus.

作者信息

Kafer E, Chae S K

机构信息

Department of Biology, McGill University, Montreal, Canada.

出版信息

Curr Genet. 1994 Mar;25(3):223-32. doi: 10.1007/BF00357166.

Abstract

The mutants musK to musS of Aspergillus nidulans are sensitive to methyl-methanesulfonate (MMS) and several of them are meiotic-defective and alter mitotic recombination frequencies. All were found to be cross-sensitive to 4-nitro-quinoline-N-oxide (4-NQO) but unexpectedly none of them was hypersensitive to gamma-rays and few to UV light. Double mus; uvs mutants were constructed to test for interactions with uvs mutations of the four epistatic groups of Aspergillus, "UvsF", "UvsC", "UvsI", and "UvsB". All meiotic-defective mus mutations caused some lethal interactions, usually with uvsF. None of them showed epistasis with UvsF or UvsB group mutants and one, musO, may represent a new group. Three mus mutations that affect recombination were assigned to the UvsC group, namely musN and K, and also musL which is recombination-defective and closely resembles uvsC. While uvsC mutants are mutators and lack UV-mutagenesis, most mus mutants had no effects on mutation. Only musR, which appeared epistatic with uvsI, showed reduced UV-reversion frequencies similar to uvsI. The recombination-proficient mus mutants appeared to be epistatic with more than one group, but in several cases sensitivities were slight and overlaps insufficient to obtain corroborating results with MMS and 4-NQO.

摘要

构巢曲霉的musK至musS突变体对甲磺酸甲酯(MMS)敏感,其中一些突变体存在减数分裂缺陷并改变有丝分裂重组频率。所有这些突变体对4-硝基喹啉-N-氧化物(4-NQO)均表现出交叉敏感性,但出乎意料的是,它们均对γ射线不敏感,对紫外线敏感的也很少。构建了双mus; uvs突变体,以测试与构巢曲霉四个上位性组“UvsF”、“UvsC”、“UvsI”和“UvsB”的uvs突变之间的相互作用。所有减数分裂缺陷的mus突变都会引起一些致死性相互作用,通常是与uvsF。它们均未显示与UvsF或UvsB组突变体存在上位性,其中一个突变体musO可能代表一个新的组。三个影响重组的mus突变被归为UvsC组,即musN和K,以及重组缺陷且与uvsC非常相似的musL。虽然uvsC突变体是突变体且缺乏紫外线诱变作用,但大多数mus突变体对突变没有影响。只有与uvsI表现出上位性的musR显示出与uvsI相似的降低的紫外线回复频率。重组能力正常的mus突变体似乎与多个组存在上位性,但在几种情况下,敏感性很轻微,重叠程度不足以通过MMS和4-NQO获得确凿的结果。

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