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High-Resolution SNP/CGH Microarrays Reveal the Accumulation of Loss of Heterozygosity in Commonly Used Candida albicans Strains

机译:高分辨率SNP / CGH芯片揭示了常用的白色念珠菌菌株中杂合性损失的积累

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摘要

Phenotypic diversity can arise rapidly through loss of heterozygosity (LOH) or by the acquisition of copy number variations (CNV) spanning whole chromosomes or shorter contiguous chromosome segments. In Candida albicans, a heterozygous diploid yeast pathogen with no known meiotic cycle, homozygosis and aneuploidy alter clinical characteristics, including drug resistance. Here, we developed a high-resolution microarray that simultaneously detects ∼39,000 single nucleotide polymorphism (SNP) alleles and ∼20,000 copy number variation loci across the C. albicans genome. An important feature of the array analysis is a computational pipeline that determines SNP allele ratios based upon chromosome copy number. Using the array and analysis tools, we constructed a haplotype map (hapmap) of strain SC5314 to assign SNP alleles to specific homologs, and we used it to follow the acquisition of loss of heterozygosity (LOH) and copy number changes in a series of derived laboratory strains. This high-resolution SNP/CGH microarray and the associated hapmap facilitated the phasing of alleles in lab strains and revealed detrimental genome changes that arose frequently during molecular manipulations of laboratory strains. Furthermore, it provided a useful tool for rapid, high-resolution, and cost-effective characterization of changes in allele diversity as well as changes in chromosome copy number in new C. albicans isolates.
机译:表型多样性可以通过杂合性丧失(LOH)或通过获取跨越整个染色体或更短的连续染色体片段的拷贝数变异(CNV)迅速产生。在白色念珠菌中,杂合的二倍体酵母病原体没有已知的减数分裂周期,纯合和非整倍性改变了临床特征,包括耐药性。在这里,我们开发了一种高分辨率微阵列,可同时检测白色念珠菌基因组中约39,000个单核苷酸多态性(SNP)等位基因和约20,000个拷贝数变异位点。阵列分析的一个重要特征是一条计算管线,该管线可根据染色体拷贝数确定SNP等位基因比率。使用阵列和分析工具,我们构建了菌株SC5314的单倍型图(hapmap),以将SNP等位基因分配给特定的同源物,并用它来追踪杂合性缺失(LOH)的获得和一系列衍生的拷贝数变化实验室菌株。这种高分辨率的SNP / CGH微阵列和相关的hapmap促进了实验室菌株等位基因的定相,并揭示了在实验室菌株分子操作过程中经常出现的有害基因组变化。此外,它为快速,高分辨率和具有成本效益的表征等位基因多样性变化以及新的白色念珠菌分离株的染色体拷贝数变化提供了有用的工具。

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