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High-Resolution Mapping of Complex Traits with a Four-Parent Advanced Intercross Yeast Population

机译:具有四亲高级交叉酵母菌群的复杂性状的高分辨率定位

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摘要

A large fraction of human complex trait heritability is due to a high number of variants with small marginal effects and their interactions with genotype and environment. Such alleles are more easily studied in model organisms, where environment, genetic makeup, and allele frequencies can be controlled. Here, we examine the effect of natural genetic variation on heritable traits in a very large pool of baker’s yeast from a multiparent 12th generation intercross. We selected four representative founder strains to produce the Saccharomyces Genome Resequencing Project (SGRP)-4X mapping population and sequenced 192 segregants to generate an accurate genetic map. Using these individuals, we mapped 25 loci linked to growth traits under heat stress, arsenite, and paraquat, the majority of which were best explained by a diverging phenotype caused by a single allele in one condition. By sequencing pooled DNA from millions of segregants grown under heat stress, we further identified 34 and 39 regions selected in haploid and diploid pools, respectively, with most of the selection against a single allele. While the most parsimonious model for the majority of loci mapped using either approach was the effect of an allele private to one founder, we could validate examples of pleiotropic effects and complex allelic series at a locus. SGRP-4X is a deeply characterized resource that provides a framework for powerful and high-resolution genetic analysis of yeast phenotypes and serves as a test bed for testing avenues to attack human complex traits.
机译:人类复杂性状遗传力的很大一部分是由于大量的变种,其边际效应较小,以及它们与基因型和环境的相互作用。在模型生物中,可以控制环境,遗传构成和等位基因频率,更容易研究此类等位基因。在这里,我们研究了自然遗传变异对来自多亲本12代杂交的一大批面包酵母中可遗传性状的影响。我们选择了四个代表性的创始菌株,以产生酵母基因组重测序计划(SGRP)-4X定位种群,并对192个分离子进行了测序,以生成准确的遗传图谱。使用这些个体,我们绘制了25个与热胁迫,亚砷酸盐和百草枯下的生长性状相关的基因座,其中大多数可以最好地解释为在一个条件下单个等位基因引起的表型发散。通过对来自在热胁迫下生长的数百万个分离子的合并DNA进行测序,我们进一步鉴定了分别在单倍体和二倍体库中选择的34和39个区域,其中大部分针对单个等位基因。尽管使用这两种方法绘制的大多数基因座的最简约模型是一个创始人专有的等位基因的作用,但我们可以在一个位点验证多效性​​作用和复杂等位基因序列的实例。 SGRP-4X是一种深具特色的资源,为酵母表型的强大和高分辨率遗传分析提供了框架,并充当了测试攻击人类复杂性状的途径的试验床。

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