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Advances in Understanding Mating Type Gene Organization in the Mushroom-Forming Fungus Flammulina velutipes

机译:蘑菇形成菌金针菇交配型基因组织的研究进展。

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The initiation of sexual development in the important edible and medicinal mushroom Flammulina velutipes is controlled by special genes at two different, independent, mating type (MAT) loci: HD and PR. We expanded our understanding of the F. velutipes mating type system by analyzing the MAT loci from a series of strains. The HD locus of F. velutipes houses homeodomain genes ( Hd genes) on two separated locations: sublocus HD-a and HD-b. The HD-b subloci contained strain-specific Hd1 / Hd2 gene pairs, and crosses between strains with different HD-b subloci indicated a role in mating. The function of the HD-a sublocus remained undecided. Many, but not all strains contained the same conserved Hd2 gene at the HD-a sublocus. The HD locus usually segregated as a whole, though we did detect one new HD locus with a HD-a sublocus from one parental strain, and a HD-b sublocus from the other. The PR locus of F. velutipes contained pheromone receptor ( STE3 ) and pheromone precursor ( Pp ) genes at two locations, sublocus PR-a and PR-b. PR-a and PR-b both contained sets of strain-specific STE3 and Pp genes, indicating a role in mating. PR-a and PR-b cosegregated in our experiments. However, the identification of additional strains with identical PR-a, yet different PR-b subloci, demonstrated that PR subloci can recombine within the PR locus. In conclusion, at least three of the four MAT subloci seem to participate in mating, and new HD and PR loci can be generated through intralocus recombination in F. velutipes .
机译:重要的食用和药用蘑菇金针菇中性发育的启动受两个不同,独立,交配型(MAT)基因座上的特殊基因控制:HD和PR。通过分析来自一系列菌株的MAT基因座,我们扩展了对天鹅绒交配类型系统的理解。绒毛镰刀菌的HD基因座在两个分开的位置上有同源域基因(Hd基因):亚基因座HD-a和HD-b。 HD-b亚克隆包含菌株特异性Hd1 / Hd2基因对,具有不同HD-b亚克隆的菌株之间的杂交表明它们在交配中起作用。 HD-a子基因座的功能尚未确定。许多但不是全部菌株在HD-a亚基因座中包含相同的保守Hd2基因。尽管我们确实检测到一个新的HD基因座,其中一个亲本菌株的HD-a亚基因座,另一个亲本菌株的HD-b亚基因座,但HD基因座通常是整体隔离的。 velutipes的PR基因座在两个位点PR-a和PR-b处含有信息素受体(STE3)和信息素前体(Pp)基因。 PR-a和PR-b都包含一组菌株特异性STE3和Pp基因,表明它们在交配中起作用。 PR-a和PR-b在我们的实验中共同分离。然而,鉴定具有相同PR-a但具有不同PR-b亚基因座的其他菌株,表明PR亚基因座可在PR基因座内重组。总之,四个MAT亚基因座中至少有3个似乎参与交配,并且可以通过velutipes中的基因座内重组产生新的HD和PR基因座。

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