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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Genetic Transformation of Neurospora tetrasperma, Demonstration of Repeat-Induced Point Mutation (RIP) in Self-Crosses and a Screen for Recessive RIP-Defective Mutants
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Genetic Transformation of Neurospora tetrasperma, Demonstration of Repeat-Induced Point Mutation (RIP) in Self-Crosses and a Screen for Recessive RIP-Defective Mutants

机译:四孢子虫神经孢子的遗传转化,自我交叉中的重复诱导点突变(RIP)演示和隐性RIP缺陷突变体的筛选

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The pseudohomothallic fungus Neurospora tetrasperma is naturally resistant to the antibiotic hygromycin. We discovered that mutation of its erg-3 (sterol C-14 reductase) gene confers a hygromycin-sensitive phenotype that can be used to select transformants on hygromycin medium by complementation with the N. crassa erg-3+ and bacterial hph genes. Cotransformation of hph with PCR-amplified DNA of other genes enabled us to construct strains duplicated for the amplified DNA. Using transformation we constructed self-fertile strains that were homoallelic for an ectopic erg-3+ transgene and a mutant erg-3 allele at the endogenous locus. Self-crosses of these strains yielded erg-3 mutant ascospores that produced colonies with the characteristic morphology on Vogel's sorbose agar described previously for erg-3 mutants of N. crassa . The mutants were generated by repeat-induced point mutation (RIP), a genome defense process that causes numerous G:C to A:T mutations in duplicated DNA sequences. Homozygosity for novel recessive RIP-deficient mutations was signaled by self-crosses of erg-3 -duplication strains that fail to produce erg-3 mutant progeny. Using this assay we isolated a UV-induced mutant with a putative partial RIP defect. RIP-induced mutants were isolated in rid-1 and sad-1 , which are essential genes, respectively, for RIP and another genome defense mechanism called meiotic silencing by unpaired DNA.
机译:假甲真菌真菌四孢子虫自然对抗生素潮霉素具有抗性。我们发现其erg-3(固醇C-14还原酶)基因突变赋予潮霉素敏感性表型,可通过与猪笼草erg-3 +和细菌hph基因互补来选择潮霉素培养基上的转化子。 hph与其他基因的PCR扩增DNA的共转化使我们能够构建为扩增DNA复制的菌株。使用转化,我们构建了内源性异位erg-3 +转基因和突变erg-3等位基因同等位基因的自育菌株。这些菌株的自交产生了erg-3突变体子囊孢子,其产生了具有先前描述的N.crassa erg-3突变体的沃格尔山梨糖琼脂的特征形态的菌落。突变体是由重复诱导点突变(RIP)产生的,RIP是一种基因组防御过程,在重复的DNA序列中引起许多G:C到A:T突变。新的隐性RIP缺陷突变的纯合性是由erg-3重复菌株的自交引起的,这些菌株不能产生erg-3突变后代。使用该测定法,我们分离出了紫外线诱导的突变体,该突变体具有假定的部分RIP缺陷。 RIP诱导的突变体分别在rid-1和sad-1中分离,这是RIP的必需基因,另一种基因组防御机制是通过未配对的DNA进行减数分裂沉默。

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