Beier Sabrina, Hinterdobler Wolfgang, Monroy Alberto Alonso, Bazafkan Hoda, Schmoll Monika
Center for Health and Bioresources, AIT Austrian Institute of Technology GmbH, Tulln, Austria.
Front Microbiol. 2020 May 20;11:974. doi: 10.3389/fmicb.2020.00974. eCollection 2020.
The complex environment of fungi requires a delicate balance between the efforts to acquire nutrition, to reproduce, and to fend off competitors. In , an interrelationship between regulation of enzyme gene expression and secondary metabolism was shown. In this study, we investigated the physiological relevance of the unique YPK1-type kinase USK1 of . is located in the vicinity of the SOR cluster and is involved in regulation of several genes from this secondary metabolite cluster as well as dihydrotrichotetronine and other secondary metabolites. Moreover, USK1 is required for biosynthesis of normal levels of secondary metabolites in liquid culture. USK1 positively influences cellulase gene regulation, secreted cellulase activity, and biomass formation upon growth in constant darkness on cellulose. Positive effects of USK1 on transcript abundance of the regulator of secondary metabolism, , and the carbon catabolite repressor gene are in agreement with these functions. In summary, we found that with USK1, comprises a unique kinase that adds an additional layer of regulation to the connection of secondary metabolism and enzyme production in fungi.
真菌的复杂环境要求在获取营养、繁殖以及抵御竞争者的努力之间保持微妙的平衡。在[具体研究或文献]中,显示了酶基因表达调控与次级代谢之间的相互关系。在本研究中,我们调查了[某种真菌]中独特的YPK1型激酶USK1的生理相关性。USK1位于SOR簇附近,参与调控来自该次级代谢产物簇的几个基因以及二氢曲霉四烯酮和其他次级代谢产物。此外,在液体培养中,正常水平次级代谢产物的生物合成需要USK1。在恒定黑暗条件下于纤维素上生长时,USK1对纤维素酶基因调控、分泌的纤维素酶活性和生物量形成具有积极影响。USK1对次级代谢调节因子[具体名称]和碳分解代谢阻遏基因[具体名称]转录丰度的积极影响与这些功能一致。总之,我们发现通过USK1,[某种真菌]包含一种独特的激酶,它为真菌中次级代谢与酶产生的联系增加了额外的调控层次。