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Four Linked Genes Participate in Controlling Sporulation Efficiency in Budding Yeast

机译:四个链接的基因参与控制酵母芽孢形成效率。

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摘要

Quantitative traits are conditioned by several genetic determinants. Since such genes influence many important complex traits in various organisms, the identification of quantitative trait loci (QTLs) is of major interest, but still encounters serious difficulties. We detected four linked genes within one QTL, which participate in controlling sporulation efficiency in Saccharomyces cerevisiae. Following the identification of single nucleotide polymorphisms by comparing the sequences of 145 genes between the parental strains SK1 and S288c, we analyzed the segregating progeny of the cross between them. Through reciprocal hemizygosity analysis, four genes, RAS2, PMS1, SWS2, and FKH2, located in a region of 60 kilobases on Chromosome 14, were found to be associated with sporulation efficiency. Three of the four “high” sporulation alleles are derived from the “low” sporulating strain. Two of these sporulation-related genes were verified through allele replacements. For RAS2, the causative variation was suggested to be a single nucleotide difference in the upstream region of the gene. This quantitative trait nucleotide accounts for sporulation variability among a set of ten closely related winery yeast strains. Our results provide a detailed view of genetic complexity in one “QTL region” that controls a quantitative trait and reports a single nucleotide polymorphism-trait association in wild strains. Moreover, these findings have implications on QTL identification in higher eukaryotes.
机译:数量性状受几个遗传决定因素的制约。由于此类基因影响着各种生物中许多重要的复杂性状,因此定量性状基因位点(QTL)的鉴定备受关注,但仍然遇到严重的困难。我们在一个QTL中检测到四个连锁基因,这些基因参与控制酿酒酵母中的孢子形成效率。通过比较亲本菌株SK1和S288c之间145个基因的序列鉴定单核苷酸多态性后,我们分析了它们之间杂交的分离后代。通过相互半合子性分析,发现位于第14号染色体上60 kb区域中的RAS2,PMS1,SWS2和FKH2这四个基因与孢子形成效率相关。四个“高”孢子形成等位基因中的三个来自“低”孢子形成菌株。这些等与孢子形成有关的基因中有两个通过等位基因置换得到了验证。对于RAS2,该原因变异被认为是基因上游区域的一个核苷酸差异。该定量性状核苷酸解释了十种密切相关的酿酒酵母菌株中的孢子形成变异性。我们的结果提供了一个“ QTL区域”中遗传复杂性的详细视图,该“ QTL区域”控制定量性状并报告了野生菌株中的单核苷酸多态性-性状关联。此外,这些发现对高等真核生物的QTL鉴定具有影响。

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