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四孢链孢霉的遗传转化、自交中重复诱导点突变(RIP)的证明以及隐性RIP缺陷突变体的筛选。

Genetic transformation of Neurospora tetrasperma, demonstration of repeat-induced point mutation (RIP) in self-crosses and a screen for recessive RIP-defective mutants.

作者信息

Bhat Ashwin, Tamuli Ranjan, Kasbekar Durgadas P

机构信息

Centre for Cellular and Molecular Biology, Hyderabad 500 007, India.

出版信息

Genetics. 2004 Jul;167(3):1155-64. doi: 10.1534/genetics.103.025171.

Abstract

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.

摘要

伪同宗配合真菌四孢链孢霉天然抗潮霉素。我们发现其erg-3(甾醇C-14还原酶)基因突变会赋予潮霉素敏感表型,可通过用粗糙链孢霉erg-3⁺和细菌hph基因互补,在潮霉素培养基上选择转化体。hph与其他基因的PCR扩增DNA共转化,使我们能够构建扩增DNA重复的菌株。通过转化,我们构建了异位erg-3⁺转基因和内源位点突变erg-3等位基因纯合的可自育菌株。这些菌株的自交产生了erg-3突变子囊孢子,这些子囊孢子在沃格尔山梨糖琼脂上形成具有先前描述的粗糙链孢霉erg-3突变体特征形态的菌落。这些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,会导致重复DNA序列中大量G:C到A:T的突变。erg-3重复菌株的自交未能产生erg-3突变后代,这表明新的隐性RIP缺陷纯合性。利用该检测方法,我们分离出了一个紫外线诱导的具有假定部分RIP缺陷的突变体。在rid-1和sad-1中分离出了RIP诱导的突变体,它们分别是RIP和另一种称为未配对DNA减数分裂沉默的基因组防御机制所必需的基因。

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