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Dissection of quantitative traits by bulk segregant mapping in a protoploid yeast species

机译:在原倍体酵母菌种中通过大量分离子作图分析定量性状

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Since more than a decade ago, Saccharomyces cerevisiae has been used as a model to dissect complex traits, revealing the genetic basis of a large number of traits in fine detail. However, to have a more global view of the genetic architecture of traits across species, the examination of the molecular basis of phenotypes within non-conventional species would undoubtedly be valuable. In this respect, the Saccharomycotina yeasts represent ideal and potential non-model organisms. Here we sought to assess the feasibility of genetic mapping by bulk segregant analysis in the protoploid Lachancea kluyveri (formerly S. kluyveri) yeast species, a distantly related species to S. cerevisiae. For this purpose, we designed a fluorescent mating-type marker, compatible with any mating-competent strains representative of this species, to rapidly create a large population of haploid segregants (> 10(5) cells). Quantitative trait loci can be mapped by selecting and sequencing an enriched pool of progeny with extreme phenotypic values. As a test bed, we applied this strategy and mapped the causal loci underlying halotolerance phenotypes in L. kluyveri. Overall, this study demonstrates that bulk segregant mapping is a powerful way for investigating the genetic basis of natural variations in non-model yeast organisms and more precisely in L. kluyveri.
机译:自十多年前以来,酿酒酵母(Saccharomyces cerevisiae)被用作解剖复杂性状的模型,从而详细揭示了许多性状的遗传基础。但是,要对物种间性状的遗传结构有一个更全面的认识,对非常规物种内表型分子基础的研究无疑将是有价值的。在这方面,酵母菌酵母代表理想和潜在的非模式生物。在这里,我们试图通过在原倍体Lachancea kluyveri(以前称为S. kluyveri)酵母物种(与酿酒酵母(S. cerevisiae)远缘相关的物种)中的大量分离子分析评估遗传作图的可行性。为此,我们设计了一种荧光交配型标记,与代表该物种的任何具有交配能力的菌株兼容,以快速创建大量单倍体分离子(> 10(5)细胞)。可以通过选择和测序具有极端表型值的丰富后代库来绘制定量性状基因座。作为测试平台,我们应用了该策略并绘制了克鲁维酵母中耐盐性表型的因果位点。总的来说,这项研究表明,大量的分离子作图是研究非模式酵母生物中自然变异的遗传基础的有力方法,而更确切地说,是在克鲁维酵母中。

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