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Loss of heterozygosity, by mitotic gene conversion and crossing over, causes strain-specific adenine mutants in constitutive diploid Candida albicans

机译:通过有丝分裂基因转化和交叉杂合性杂合性丧失,导致组成类二倍体念珠菌蛋白念珠菌中的菌株特异性腺嘌呤突变体

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Molecular evidence is provided in this paper to elucidate a long-standing intriguing phenomenon in fungal genetics: that many natural isolates of the constitutive diploid organism Candida albicans yield strain-specific, recessive mutants at a reproducible frequency that is as high as a few percent of the surviving cells after exposure to UV irradiation or other mutagens. Southern hybridization analysis and DNA sequence data indicated that C. albicans CA12, a clinical isolate, is heterozygous for the ADE2 gene, carrying one functional and one null allele. Sequence analysis of the null allele revealed the presence of a 1·3 kb deletion, which locates between two AATC repeats and spans the promoter and coding regions of the gene. The adenine auxotrophic mutants, which were readily isolated after UV irradiation of C. albicans CA12, were proved to be the segregants of mitotic recombination as they remained as diploid, not hemizygous or haploid, cells and were homozygous for ade2. Analysis of reciprocal products of the mitotic recombination detected that the process of loss of heterozygosity was mediated by mitotic crossing over (reciprocal exchange of genetic information) as well as gene conversion (non-reciprocal exchange of genetic information).
机译:本文提供了分子证据,以阐明真菌遗传学中长期的兴趣现象:组成型二倍体生物念珠菌的许多天然分离物,念珠菌蛋白质蛋白质蛋白酶产生特异性的可重复频率,其可重复的频率高于几个百分比暴露于紫外线辐射或其他诱变诱变后的存活细胞。 Southern杂交分析和DNA序列数据表明,C. albicansCa12,临床分离物是对ADE2基因的杂合,携带一种官能和一个无效等位基因。 Null等位基因的序列分析显示出1·3kb的存在,其位于两个AATC重复之间并跨越基因的启动子和编码区域。被证明,在紫红色辐射后易于分离的腺嘌呤氛围突变体是有丝分裂重组的分离,因为它们仍然是二倍体,而不是嗜血素或单倍体,细胞和纯合的ADE2。分析偶像重组的互核产品检测到杂合性丧失过程通过多肽交叉(遗传信息互易交换)以及基因转化(遗传信息的非互惠交换)介导。

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