Lehrstuhl für Allgemeine Botanik, Ruhr-Universität Bochum, Postfach 102148, D-4630, Bochum, Germany.
Curr Genet. 1979 Dec;1(1):85-8. doi: 10.1007/BF00413309.
In the wood destroying fungus Schizophyllum commune, a well known subject for genetic studies, fruit bodies are produced not only in the course of the sexual cycle but also asexually. Sexual fruiting requires the establishment of a dikaryon which is under the control of the incompatibility factors A and B. Asexual fruiting, however, starts directly from a monokaryon. The initiation of monokaryotic fruiting requires the presence of a single gene leading to the differentiation of fruit body initials. The action of at least two more genes is required for the further morphogenetic steps resulting eventually in the production of fruit bodies which differ in shape from dikaryotic fruit bodies. As a consequence of a mitosis their basidia produce two spores only. The three genes responsible for monokaryotic fruiting are pleiotropic and determine synergistically the timing of dikaryotic fruiting within a range between 6 to 20 d or longer. A fourth gene was found which codes epistatically for the formation of dome-like masses of stromatic tissue, thus directing morphogenesis into a side track.
在木腐真菌裂褶菌中,它是遗传研究的一个知名对象,不仅在有性周期中产生子实体,而且还可以无性繁殖。有性生殖需要建立一个二核体,它受不亲和因子 A 和 B 的控制。然而,无性生殖直接从单核体开始。单核生殖的开始需要存在一个单一的基因,导致子实体原基的分化。至少需要另外两个基因的作用,才能进行进一步的形态发生步骤,最终导致产生形状与二核体子实体不同的子实体。由于有丝分裂,它们的担子菌只产生两个孢子。负责单核生殖的三个基因是多效的,并协同确定二核生殖的时间范围在 6 到 20 天或更长时间之间。还发现了第四个基因,它是上位性的,负责形成 Dome-like 块状的基质组织,从而将形态发生引导到一个侧支。