Kothe E
Microbial Phytopathology, Friedrich-Schiller-University, Beutenbergstr. 11, Jena, 07745, Germany.
Fungal Genet Biol. 1999 Jul-Aug;27(2-3):146-52. doi: 10.1006/fgbi.1999.1129.
In the homobasidiomycete Schizophyllum commune the mating type genes of the B locus encode pheromones and pheromone receptors in multiple allelic specificities. Interaction of non-self pheromones and receptors leads to induction of B-regulated development easily scored in S. commune by the "flat" phenotype which lacks aerial mycelium formation and shows aberrant hyphal morphology. In contrast, self pheromones are not recognized and B-regulated development is not induced. Natural and mutant alleles of receptors have been analyzed for their specificity in transformation assays, and parts of the receptor involved in ligand discrimination can be described. The biological role of pheromone response in S. commune is assumed to be connected to nuclear migration based on the observation that wild-type cells with a receptor gene of different specificity lead to cells capable of nuclear uptake. Other possible roles for pheromone function are discussed.
在同担子菌裂褶菌中,B位点的交配型基因编码具有多种等位特异性的信息素和信息素受体。非自身信息素与受体的相互作用会诱导B调控的发育,在裂褶菌中,这种发育很容易通过“扁平”表型来判断,该表型缺乏气生菌丝的形成,且菌丝形态异常。相比之下,自身信息素不被识别,B调控的发育也不会被诱导。已经在转化试验中分析了受体的天然和突变等位基因的特异性,并且可以描述受体中参与配体识别的部分。基于具有不同特异性受体基因的野生型细胞会产生能够摄取细胞核的细胞这一观察结果,推测裂褶菌中信息素反应的生物学作用与核迁移有关。还讨论了信息素功能的其他可能作用。