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Interconversion of Yeast Mating Types II. Restoration of Mating Ability to Sterile Mutants in Homothallic and Heterothallic Strains

机译:酵母交配类型II的相互转化。恢复同型和杂种菌株无菌突变体的交配能力。

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摘要

The two mating types of the yeast Saccharomyces cerevisiae can be interconverted in both homothallic and heterothallic strains. Previous work indicates that all yeast cells contain the information to be both >a and α and that the HO gene (in homothallic strains) promotes a change in mating type by causing a change at the mating type locus itself. In both heterothallic and homothallic strains, a defective α mating type locus can be converted to a functional >a locus and subsequently to a functional α locus. In contrast, action of the HO gene does not restore mating ability to a strain defective in another gene for mating which is not at the mating type locus. These observations indicate that a yeast cell contains an additional copy (or copies) of α information, and lead to the "cassette" model for mating type interconversion. In this model, HM>a and hmα loci are blocs of unexpressed α regulatory information, and HMα and hm>a loci are blocs of unexpressed >a regulatory information. These blocs are silent because they lack an essential site for expression, and become active upon insertion of this information (or a copy of the information) into the mating type locus by action of the HO gene.
机译:酵母酿酒酵母的两种交配类型可以在同系和异系菌株中相互转化。先前的工作表明,所有酵母细胞均包含> a 和α信息,并且HO基因(在同型品系中)通过引起交配型基因座本身的变化而促进了交配型的改变。在杂种和同种菌株中,有缺陷的α交配型基因座都可以转化为功能性> a 基因座,然后转化为功能性α基因座。相反,HO基因的作用不能恢复与不在交配型基因座处的另一种用于交配的基因有缺陷的菌株的交配能力。这些观察结果表明酵母细胞包含α信息的一个或多个附加拷贝,并导致了用于嵌合型相互转化的“盒”模型。在此模型中,HM > a 和hmα基因座是未表达的α调控信息群,而HMα和hm > a 基因座是未表达的> a 调控群。信息。这些集团是沉默的,因为它们缺乏表达的必要位点,并且在通过HO基因的作用将此信息(或信息的副本)插入到交配型基因座中时变得活跃。

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