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酿酒酵母中的合成遗传阵列分析。

Synthetic genetic array analysis in Saccharomyces cerevisiae.

作者信息

Tong Amy Hin Yan, Boone Charles

出版信息

Methods Mol Biol. 2006;313:171-92. doi: 10.1385/1-59259-958-3:171.

Abstract

Synthetic lethality occurs when the combination of two mutations leads to an inviable organism. Screens for synthetic lethal genetic interactions have been used extensively to identify genes whose products buffer one another or impinge on the same essential pathway. For the yeast Saccharomyces cerevisiae, we developed a method termed Synthetic Genetic Array (SGA) analysis, which offers an efficient approach for the systematic construction of double mutants and enables a global analysis of synthetic lethal genetic interactions. In a typical SGA screen, a query mutation is crossed to an ordered array of approx 5000 viable gene deletion mutants (representing approximately 80% of all yeast genes) such that meiotic progeny harboring both mutations can be scored for fitness defects. This array-based approach automates yeast genetic analysis in general and can be easily adapted for a number of different screens, including genetic suppression, plasmid shuffling, dosage lethality, or suppression.

摘要

当两个突变的组合导致生物体无法存活时,就会发生合成致死。用于合成致死遗传相互作用的筛选已被广泛用于鉴定其产物相互缓冲或影响同一基本途径的基因。对于酿酒酵母,我们开发了一种称为合成基因阵列(SGA)分析的方法,该方法为系统构建双突变体提供了一种有效途径,并能够对合成致死遗传相互作用进行全局分析。在典型的SGA筛选中,将一个查询突变与大约5000个可行基因缺失突变体的有序阵列杂交(代表所有酵母基因的约80%),以便可以对携带这两种突变的减数分裂后代进行适应性缺陷评分。这种基于阵列的方法总体上使酵母遗传分析自动化,并且可以很容易地适用于许多不同的筛选,包括遗传抑制、质粒洗牌、剂量致死或抑制。

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