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Mutations in mating-type genes of the heterothallic fungus Podospora anserina lead to self-fertility.

机译:杂藻真菌Podospora anserina交配型基因的突变会导致自育。

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摘要

The heterothallic fungus Podospora anserina has two mating-type alleles termed mat+ and mat-. The mat+ sequence contains one gene, FPR1, while mat- contains three genes: FMR1, SMR1, and SMR2. FPR1 and FMR1 are required for fertilization, which is followed by mitotic divisions of the two parental nuclei inside the female organ. This leads to the formation of plurinucleate cells containing a mixture of parental mat+ and mat- nuclei. Further development requires a recognition between mat+ and mat- nuclei before migration of the mat+/mat- pairs into specialized hyphae in which karyogamy, meiosis, and ascospore formation take place. FPR1, FMR1, and SMR2 control this internuclear recognition step. Initial development of the dikaryotic stage is supposed to require SMR1; disruption of SMR1 results in barren perithecia. In a systematic search for suppressors restoring fertility, we isolated 15 suppressors-all of them mutations in the mating-type genes. These fmr1, smr2, and fpr1 mutants, as well as the strains disrupted for FMR1, SMR2, and FPR1, are weakly self-fertile. They are able to act as the male partner on a strain of the same mating type and give a mixture of biparental and uniparental progeny when crossed with a wild-type strain of opposite mating type. These observations lead us to propose that SMR2, FMR1, and FPR1 act as activators and repressors of fertilization and internuclear recognition functions.
机译:杂藻真菌Popospora anserina具有两个交配型等位基因,称为mat +和mat-。 mat +序列包含一个基因FPR1,而mat-序列包含三个基因:FMR1,SMR1和SMR2。受精需要FPR1和FMR1,然后是雌性器官内两个亲代核的有丝分裂。这导致形成含有亲本mat +和mat-核混合物的多核细胞。进一步的发展需要在mat + / matpair迁移到发生菌核,减数分裂和子囊孢子形成的特定菌丝之前,先要认识到mat +和mat-核。 FPR1,FMR1和SMR2控制此核间识别步骤。双核阶段的初步发展应该需要SMR1。 SMR1的破坏会导致贫乏的上皮细胞。在系统地寻找恢复生育力的抑制因子的过程中,我们分离了15个抑制因子-它们都是交配型基因中的突变。这些fmr1,smr2和fpr1突变体,以及为FMR1,SMR2和FPR1破坏的菌株,自我繁殖能力很弱。它们能够在相同交配类型的菌株中充当雄性伴侣,并在与相反交配类型的野生型菌株杂交时产生双亲和单亲后代的混合物。这些观察结果使我们建议SMR2,FMR1和FPR1充当受精和核间识别功能的激活剂和阻遏剂。

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