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Sex-Determination System in the Diploid Yeast Zygosaccharomyces sapae

机译:二倍体酵母Zygosaccharomyces sapae中的性别决定系统

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摘要

Sexual reproduction and breeding systems are driving forces for genetic diversity. The mating-type (MAT) locus represents a mutation and chromosome rearrangement hotspot in yeasts. Zygosaccharomyces rouxii complex yeasts are naturally faced with hostile low water activity (aw) environments and are characterized by gene copy number variation, genome instability, and aneuploidy/allodiploidy. Here, we investigated sex-determination system in Zygosaccharomyces sapae diploid strain ABT301T, a member of the Z. rouxii complex. We cloned three divergent mating type-like (MTL) α-idiomorph sequences and designated them as ZsMTLα copies 1, 2, and 3. They encode homologs of Z. rouxii CBS 732T MATα2 (amino acid sequence identities spanning from 67.0 to 99.5%) and MATα1 (identity range 81.5–99.5%). ABT301T possesses two divergent HO genes encoding distinct endonucleases 100% and 92.3% identical to Z. rouxii HO. Cloning of MAT>a-idiomorph resulted in a single ZsMTL>a locus encoding two Z. rouxii-like proteins MAT>a1 and MAT>a2. To assign the cloned ZsMTLα and ZsMTL>a idiomorphs as MAT, HML, and HMR cassettes, we analyzed their flanking regions. Three ZsMTLα loci exhibited the DIC1-MAT-SLA2 gene order canonical for MAT expression loci. Furthermore, four putative HML cassettes were identified, two containing the ZsMTLα copy 1 and the remaining harboring ZsMTLα copies 2 and 3. Finally, the ZsMTL>a locus was 3′-flanked by SLA2, suggesting the status of MAT expression locus. In conclusion, Z. sapae ABT301T displays an aααα genotype missing of the HMR silent cassette. Our results demonstrated that mating-type switching is a hypermutagenic process in Z. rouxii complex that generates genetic diversity de novo. This error-prone mechanism could be suitable to generate progenies more rapidly adaptable to hostile environments.
机译:有性生殖和育种系统是遗传多样性的驱动力。交配型(MAT)基因座代表酵母中的突变和染色体重排热点。鲁氏合酵母复杂的酵母天然面对不利的低水分活度(aw)环境,并具有基因拷贝数变异,基因组不稳定性和非整倍性/异源二倍体的特征。在这里,我们研究了鲁氏酵母Z.gouxii sapae二倍体菌株ABT301 T 的性别决定系统。我们克隆了三个不同的交配型(MTL)α-独特型序列,并将其命名为ZsMTLα复制1、2和3。它们编码Z. rouxii CBS 732 T MATα2的同源物(氨基酸序列身份范围从67.0到99.5%)和MATα1(身份范围81.5–99.5%)。 ABT301 T 拥有两个不同的HO基因,它们编码与鲁氏梭菌HO不同的内切核酸酶,分别具有100%和92.3%的相同性。克隆MAT > a -独特型导致一个单一的ZsMTL > a 基因座,该基因座编码两个鲁氏酵母样蛋白MAT > a 1和MAT > a 2。为了将克隆的ZsMTLα和ZsMTL > a 独特型指定为MAT, HML HMR 盒,我们分析了它们的侧翼区域。三个 ZsMTL α基因座表现出 MAT 表达基因座的 DIC1-MAT-SLA2 基因顺序。此外,鉴定出四个推定的 HML 盒,其中两个包含 ZsMTL α副本1,其余包含 ZsMTL α副本2和3。 ZsMTL > a 位点与 SLA2 呈3'侧翼,提示 MAT 表达位点的状态。总之, Z。 sapae ABT301 T 显示 HMR 沉默盒带的aααα基因型缺失。我们的结果表明,交配型转换是 Z中的超突变过程。 rouxii 复合物,产生了新的遗传多样性。这种容易出错的机制可能适用于生成更迅速地适应敌对环境的后代。

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