Microbiology, Department of Biology, Utrecht University, Padualaan 8, 3584, CH, Utrecht, The Netherlands.
Delft Bioinformatics Lab, Delft University of Technology, Mekelweg 4, 2628, CD, Delft, The Netherlands.
Sci Rep. 2017 Mar 22;7(1):310. doi: 10.1038/s41598-017-00483-3.
Mushrooms are the most conspicuous fungal structures. Transcription factors (TFs) Bri1 and Hom1 of the model fungus Schizophyllum commune are involved in late stages of mushroom development, while Wc-2, Hom2, and Fst4 function early in development. Here, it is shown that Bri1 and Hom1 also stimulate vegetative growth, while biomass formation is repressed by Wc-2, Hom2, and Fst4. The Δbri1Δbri1 and the Δhom1Δhom1 strains formed up to 0.6 fold less biomass when compared to wild-type, while Δwc-2Δwc-2, Δhom2Δhom2, and Δfst4Δfst4 strains formed up to 2.8 fold more biomass. Inactivation of TF gene tea1, which was downregulated in the Δwc-2Δwc-2, Δhom2Δhom2, and Δfst4Δfst4 strains, resulted in a strain that was severely affected in mushroom development and that produced 1.3 fold more biomass than the wild-type. In contrast, introducing a constitutive active version of hom2 that had 4 predicted phosphorylation motifs eliminated resulted in radial growth inhibition and prompt fructification in both Δhom2 and wild-type strains, even in sterile monokaryons. Together, it is concluded that TFs involved in mushroom formation also modulate vegetative growth. Among these TFs is the homeodomain protein Hom2, being the first time that this class of regulatory proteins is implicated in repression of vegetative growth in a eukaryote.
蘑菇是最显著的真菌结构。模式真菌裂褶菌的转录因子 Bri1 和 Hom1 参与蘑菇发育的晚期阶段,而 Wc-2、Hom2 和 Fst4 则在发育早期发挥作用。本文表明,Bri1 和 Hom1 也刺激营养生长,而 Wc-2、Hom2 和 Fst4 则抑制生物量形成。与野生型相比,Δbri1Δbri1 和 Δhom1Δhom1 菌株的生物量减少了 0.6 倍,而 Δwc-2Δwc-2、Δhom2Δhom2 和 Δfst4Δfst4 菌株的生物量增加了 2.8 倍。TF 基因 tea1 在 Δwc-2Δwc-2、Δhom2Δhom2 和 Δfst4Δfst4 菌株中下调,其失活导致蘑菇发育严重受损,生物量比野生型增加了 1.3 倍。相比之下,引入具有 4 个预测磷酸化位点的组成型活性 hom2 版本,导致Δhom2 和野生型菌株的径向生长受到抑制,并迅速结实,即使在无菌单核体中也是如此。总之,参与蘑菇形成的转录因子也调节营养生长。其中包括同源域蛋白 Hom2,这是首次将这一类调节蛋白与真核生物中营养生长的抑制联系起来。