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酿酒酵母中导致抗真菌药物苯菌灵和酮康唑药物反应变异的遗传结构。

The genetic architecture in Saccharomyces cerevisiae that contributes to variation in drug response to the antifungals benomyl and ketoconazole.

机构信息

School of Biological Sciences and Centre for Biodiscovery, Victoria University of Wellington, PO Box 600, Wellington 6140, New Zealand.

出版信息

FEMS Yeast Res. 2017 May 1;17(3). doi: 10.1093/femsyr/fox027.

Abstract

The genetic basis of variation in drug response was investigated in individual Saccharomyces cerevisiae strains that exhibited different susceptibility to two antifungal agents: benomyl and ketoconazole. Following dose-response screening of 25 strains, 4 were selected on the basis of resistance or sensitivity relative to the standard laboratory strain BY. UWOPS87-2421 and L-1374 were respectively resistant and sensitive to benomyl; DBVPG6044 and Y12 were respectively resistant and sensitive to ketoconazole. We used advanced intercross lines and next generation sequencing-bulk segregant analysis to characterise the quantitative trait loci (QTL) underpinning drug responses after drug selection. Drug response was controlled by multiple QTL, ranging from a minimum of 5 to a maximum of 60 loci, almost all of which were not the primary drug target. For each drug, the resistant and the sensitive strain exhibited a number of shared loci, but also had strain-specific QTL. In our analysis, it was possible to estimate genetic effect of QTL, and a number of those shared between resistant and sensitive strains exhibited variable effect on the response phenotype. Thus, drug responses arise as a result of different genetic architectures, depending on the genetic background of the individual strain in question.

摘要

我们考察了不同酿酒酵母菌株对两种抗真菌药物(苯菌灵和酮康唑)敏感性的差异,以探究药物反应个体差异的遗传基础。在对 25 株菌进行剂量反应筛选后,我们基于与标准实验室菌株 BY 的相对抗性或敏感性,挑选了 4 株菌。UWOPS87-2421 和 L-1374 分别对苯菌灵表现出抗性和敏感性;DBVPG6044 和 Y12 分别对酮康唑表现出抗性和敏感性。我们使用先进的互交系和下一代测序-大量分离分析,在药物选择后对药物反应的数量性状基因座(QTL)进行了特征描述。药物反应受多个 QTL 控制,每个 QTL 数量从 5 个到 60 个不等,几乎所有 QTL 都不是主要的药物靶标。对于每种药物,抗性菌株和敏感菌株都表现出许多共同的基因座,但也有菌株特异性的 QTL。在我们的分析中,能够估计 QTL 的遗传效应,而且一些在抗性和敏感菌株之间共享的 QTL 对反应表型的效应也有所不同。因此,药物反应的产生是由于不同的遗传结构,取决于个体菌株的遗传背景。

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