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Mating Type Switching in the Tetrapolar Basidiomycete Agrocybe Aegerita

机译:四极担子菌Agrocybe Aegerita中的交配类型转换。

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摘要

The study of fruiting in the basidiomycete Agrocybe aegerita has shown that some haploid homokaryotic strains can spontaneously switch their mating specificities at the two unlinked A and B mating type factors. This event causes the dikaryotisation of primary homokaryons without plasmogamy and leads to the differentiation of sporulating fruit-bodies (pseudo-homokaryotic fruiting). For each mating type factor, the genetic analyses have revealed that: (1) parental and switched mating types segregate meiotically as Mendelian markers, (2) a total of six switched mating type factors (two parental and four nonparental) were obtained from a wild strain, (3) most of the nonparental factors have specificities differing from those of a large series of wild factors, (4) strains with the same expressed mating type can generate different specificities, (5) switching is always restricted to the same mating type in a homokaryon, (6) nonparental types can switch again, and (7) meiosis fixes the specificities to which switching can occur. This suggests, for the first time in filamentous fungi, the existence of a mechanism analogous to the mating type switching in yeasts. We hypothese that both A and B mating type regions in A. aegerita are constituted of three loci, one specialized in expression and two other carrying silent information. Mating type switching in homokaryotic strains would occur by copy transposition of silent A and B information into the expression loci. Moreover, we propose that during meiosis the silent loci are substituted by copies of the expressed loci.
机译:对担子菌Agrocybe aegerita结果的研究表明,一些单倍体同核生物菌株可以在两个未连接的A和B交配类型因子处自发切换交配特异性。该事件导致原发同核生物的双核化而没有胞浆异型,并导致孢子形成的果体分化(伪纯核结果)。对于每种交配类型因子,遗传分析表明:(1)亲本和交配类型通过孟德尔标记减数分裂,(2)从野生动物中总共获得了六个交配交配类型因子(两个亲本和四个非亲本)。菌株,(3)大多数非亲本因子的特异性不同于大量野生因子,(4)具有相同表达交配类型的菌株会产生不同的特异性,(5)转换始终限于同一交配类型在同源核中,(6)非亲本类型可以再次切换,并且(7)减数分裂可固定发生切换的特异性。这首次提示丝状真菌中存在类似于酵母中交配类型转换的机制。我们假设A. aegerita中的A和B交配型区域均由三个基因座组成,一个基因座专门表达,另外两个基因座携带沉默信息。通过将沉默的A和B信息复制转座到表达基因座中,可以发生纯核菌株中的交配类型转换。此外,我们建议在减数分裂过程中,沉默的基因座被表达的基因座的拷贝所取代。

著录项

  • 期刊名称 Genetics
  • 作者

    J. Labarere; T. Noel;

  • 作者单位
  • 年(卷),期 1992(131),2
  • 年度 1992
  • 页码 307–319
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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