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两个交配型位点之间染色体区域的倒位会改变多形汉逊酵母的交配型。

Inversion of the chromosomal region between two mating type loci switches the mating type in Hansenula polymorpha.

作者信息

Maekawa Hiromi, Kaneko Yoshinobu

机构信息

Yeast Genetic Resources Laboratory, Graduate School of Engineering, Osaka University, Osaka, Japan.

出版信息

PLoS Genet. 2014 Nov 20;10(11):e1004796. doi: 10.1371/journal.pgen.1004796. eCollection 2014 Nov.

Abstract

Yeast mating type is determined by the genotype at the mating type locus (MAT). In homothallic (self-fertile) Saccharomycotina such as Saccharomyces cerevisiae and Kluveromyces lactis, high-efficiency switching between a and α mating types enables mating. Two silent mating type cassettes, in addition to an active MAT locus, are essential components of the mating type switching mechanism. In this study, we investigated the structure and functions of mating type genes in H. polymorpha (also designated as Ogataea polymorpha). The H. polymorpha genome was found to harbor two MAT loci, MAT1 and MAT2, that are ∼18 kb apart on the same chromosome. MAT1-encoded α1 specifies α cell identity, whereas none of the mating type genes were required for a identity and mating. MAT1-encoded α2 and MAT2-encoded a1 were, however, essential for meiosis. When present in the location next to SLA2 and SUI1 genes, MAT1 or MAT2 was transcriptionally active, while the other was repressed. An inversion of the MAT intervening region was induced by nutrient limitation, resulting in the swapping of the chromosomal locations of two MAT loci, and hence switching of mating type identity. Inversion-deficient mutants exhibited severe defects only in mating with each other, suggesting that this inversion is the mechanism of mating type switching and homothallism. This chromosomal inversion-based mechanism represents a novel form of mating type switching that requires only two MAT loci.

摘要

酵母交配型由交配型基因座(MAT)处的基因型决定。在同宗配合(自育)的子囊菌纲酵母如酿酒酵母和乳酸克鲁维酵母中,a和α交配型之间的高效转换实现了交配。除了一个活性MAT基因座外,两个沉默交配型盒式结构是交配型转换机制的重要组成部分。在本研究中,我们研究了多形汉逊酵母(也称为多形奥默酵母)中交配型基因的结构和功能。发现多形汉逊酵母基因组含有两个MAT基因座,MAT1和MAT2,它们在同一条染色体上相距约18 kb。MAT1编码的α1决定α细胞身份,而a细胞身份和交配不需要任何交配型基因。然而,MAT1编码的α2和MAT2编码的a1对减数分裂至关重要。当MAT1或MAT2位于SLA2和SUI1基因旁边的位置时,它们具有转录活性,而另一个则受到抑制。营养限制诱导MAT间隔区的倒位,导致两个MAT基因座的染色体位置互换,从而实现交配型身份的转换。倒位缺陷型突变体仅在相互交配时表现出严重缺陷,这表明这种倒位是交配型转换和同宗配合的机制。这种基于染色体倒位的机制代表了一种仅需要两个MAT基因座的新型交配型转换形式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e7d/4238957/3e7c036c6ea9/pgen.1004796.g001.jpg

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