Srivilai Prayook, Loutchanwoot Panida, Sukha Junpen
Department of Biology, Faculty of Science, Mahasarakham University, Khamriang Sub-District, Kuntarawichai District, Mahasarakham Province, 44150, Thailand.
Pak J Biol Sci. 2009 Jan 15;12(2):110-8. doi: 10.3923/pjbs.2009.110.118.
Monokaryotic mycelia of several wild-type strains of the homobasidiomycete Coprinopsis cinerea form abundant numbers of oidia both in the light and dark due to the regulation of oidia production by the A and B mating type genes. Nevertheless, little is known about whether and how the mating type loci and light signal regulate the oidiation in C. cinerea. Herein, the experimental results demonstrated that the self-compatible homokaryon AmutBmut strain, the mycelia whose nuclei carry mutations in both the A and B loci, can produce only a few oidia in the dark, whereas the formation of numerous numbers of oidia is induced by the light. The semi-compatible homokaryon AmutB, but not ABmut, has the production and behavior of oidia formation similar to those of AmutBmut. These findings indicated that in AmutBmut strain the mutation at the A locus results in repression of oidiation in the dark and the blue light alleviates this effect, whereas the mutated B genes function has no effects. Since, the oidia production relies on both A and light signal, it is possible that A locus might be linked to the blue light receptor genes. The present results demonstrated for the first time that the secondary hyphal knot formation (skn1), fruiting body maturation (mat) and basidiospore formation (bad) genes which are essential in the C. cinerea fruiting pathway are not involved in the regulation of asexual sporulation. In addition, the positive light effect on oidiation could also occur in C. cinerea dikaryons.
同担子菌灰盖鬼伞的几个野生型菌株的单核菌丝体,由于A和B交配型基因对粉孢子产生的调控,无论在光照还是黑暗条件下都会形成大量粉孢子。然而,关于交配型位点和光信号是否以及如何调控灰盖鬼伞的粉孢子形成,人们知之甚少。在此,实验结果表明,自交亲和的同核体AmutBmut菌株,其细胞核在A和B位点均携带突变,在黑暗中只能产生少量粉孢子,而光照可诱导大量粉孢子的形成。半自交亲和的同核体AmutB,但不是ABmut,其粉孢子形成的产生和行为与AmutBmut相似。这些发现表明,在AmutBmut菌株中,A位点的突变导致黑暗中粉孢子形成受到抑制,蓝光可缓解这种效应,而突变的B基因功能则无影响。由于粉孢子的产生依赖于A和光信号,A位点可能与蓝光受体基因相关。目前的结果首次证明,灰盖鬼伞子实体形成途径中必不可少的次生菌丝结形成(skn1)、子实体成熟(mat)和担孢子形成(bad)基因不参与无性孢子形成的调控。此外,蓝光对粉孢子形成的正向作用在灰盖鬼伞双核体中也会出现。