酿酒酵母
生物
基因
模式生物
遗传学
质粒
表型
同源重组
克隆(编程)
异源的
异源表达
有机体
底漆(化妆品)
计算生物学
重组DNA
化学
有机化学
程序设计语言
计算机科学
作者
Kelley R. Healey,Ashutosh Singh
标识
DOI:10.1007/978-1-0716-3155-3_12
摘要
Understanding how a gene variant may influence antifungal resistance, or other phenotypic characteristics, is an important step in determining or dissecting resistance mechanisms. The influence of specific genes or gene alleles on a phenotype can initially be assessed within the model organism, Saccharomyces cerevisiae. S. cerevisiae exhibits efficient rates of homologous recombination making it amendable for heterologous expression and represents a susceptible organism that can be used to determine changes in antifungal susceptibilities. Many groups have developed different methodologies for the cloning, expression, and screening processes. In this chapter, we present straightforward methodology that utilizes gap-repair cloning to express a plasmid-borne copy of Candida auris ERG11 within S. cerevisiae. Multiple alleles can be compared in order to determine how specific alterations influence triazole susceptibility. Primer design, gap-repair co-transformation, and colony PCR screening are detailed.
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