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Mutant power: using mutant allele collections for yeast functional genomics

机译:突变能力:使用突变等位基因集合进行酵母功能基因组学研究

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摘要

The budding yeast has long served as a model eukaryote for the functional genomic analysis of highly conserved signaling pathways, cellular processes and mechanisms underlying human disease. The collection of reagents available for genomics in yeast is extensive, encompassing a growing diversity of mutant collections beyond gene deletion sets in the standard wild-type S288C genetic background. We review here three main types of mutant allele collections: transposon mutagen collections, essential gene collections and overexpression libraries. Each collection provides unique and identifiable alleles that can be utilized in genome-wide, high-throughput studies. These genomic reagents are particularly informative in identifying synthetic phenotypes and functions associated with essential genes, including those modeled most effectively in complex genetic backgrounds. Several examples of genomic studies in filamentous/pseudohyphal backgrounds are provided here to illustrate this point. Additionally, the limitations of each approach are examined. Collectively, these mutant allele collections in Saccharomyces cerevisiae and the related pathogenic yeast Candida albicans promise insights toward an advanced understanding of eukaryotic molecular and cellular biology.
机译:长期以来,发芽酵母一直是用于高度保守的信号传导途径,细胞过程和人类疾病潜在机制的功能基因组分析的模型真核生物。可用于酵母基因组学的试剂的收集范围广泛,涵盖了标准野生型S288C遗传背景中除基因删除集以外的越来越多的突变体收集。我们在这里回顾了突变等位基因集合的三种主要类型:转座子诱变剂集合,必需基因集合和过表达文库。每个集合均提供独特且可识别的等位基因,可用于全基因组高通量研究。这些基因组试剂在鉴定与必需基因相关的合成表型和功能方面,尤其是信息丰富,包括在复杂遗传背景下最有效地建模的那些。这里提供了一些在丝状/假菌丝背景下进行基因组研究的例子来说明这一点。此外,还检查了每种方法的局限性。总的来说,这些在酿酒酵母和相关致病酵母白色念珠菌中的突变等位基因集合有望为深入了解真核分子和细胞生物学提供深刻见解。

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