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Differential expression of genes under control of the mating-type genes in the secondary mycelium of Schizophyllum commune

机译:斯齐拉姆公社二菌体中交配型基因控制下基因的差异表达

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The Schizophyllum commune SC3 gene, which encodes a hydrophobin that coats aerial hyphae, is expressed in both monokaryons and dikaryons. The dikaryons were formed by mating two monokaryons with different MATA and MATB genes, leading to activation of the MATA- and MATB-controlled pathways (MATA-on and MATB-on). In contrast to the monokaryons, the dikaryons also expressed other hydrophobin genes (SC1, SC4) as well as a gene (SC7) encoding a hydrophilic wall protein. None of these four genes was expressed in MATA-off MATB-on mycelia, indicating that MATB-on represses SC3 and that both MATA-on and MATB-on are required for activation of SC1, SC4 and SC7. In fruiting dikaryons, immunolabelling revealed that SC3p was produced by aerial hyphae but not by hyphae that constitute the fruit-body tissue. In contrast to aerial hyphae, the latter produced dikaryon-specific transcripts and secreted SC7p into the extracellular matrix of the tissue. This suggests that in the aerial hyphae of the dikaryon the MATB-on pathway was not effective (MATB-off). We observed that in these aerial hyphae the two nuclei were wider apart than in a typical dikaryon. Although other explanations are not ruled out, we tentatively propose that effective interaction of different MATB genes requires proximity of the two nuclei containing these genes, and that disruption of this binucleate state represents a novel mechanism of gene control for spatial cell differentiation in the secondary mycelium.
机译:SC3基因,编码涂层空中菌丝的疏水蛋白,在Monokaryons和Dikaryons中表达。通过用不同的Mata和MATB基因交配两种单欧基胍形成Dikaryons,导致激活Mata和Matb控制的途径(Mata-On和Matb-on)。与Monokaryons相反,Dikaryons还表达了编码亲水性壁蛋白的其他疏水蛋白基因(SC1,SC4)以及基因(SC7)。这四种基因中的任何一个都没有在Mata-Off Matb-on Matelia中表达,表明Matb-on镇压SC3,并且Mata-On和Matb-on都是为了激活SC1,SC4和SC7所必需的。在果实达卡雷顿,免疫标签揭示了SC3P由空中菌丝制造,但不是由构成果子组织的菌丝。与空中菌丝形成鲜明对比,后者产生了特异性特异性转录物并将SC7P分泌到组织的细胞外基质中。这表明,在达卡雷顿的空中菌丝中,Matb-on途径没有有效(垫上)。我们观察到,在这些空中菌丝中,两个核相距宽在典型的达克雷顿。虽然不排除其他解释,但我们暂时提出了不同MATB基因的有效相互作用需要接近含有这些基因的两种核,并且这种离子状态的破坏是次要菌丝中的空间细胞分化的基因控制的新机制。

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