Bazafkan Hoda, Beier Sabrina, Stappler Eva, Böhmdorfer Stefan, Oberlerchner Josua T, Sulyok Michael, Schmoll Monika
Center for Health and Bioresources, AIT Austrian Institute of Technology GmbH, Konrad-Lorenz Strasse 24, 3430 Tulln, Austria.
Department of Chemistry, Division of Chemistry of Renewable Resources, University of Natural Resources and Life Sciences Vienna, Konrad-Lorenz-Straße 24, 3430 Tulln, Austria.
Mol Microbiol. 2017 Dec;106(5):742-759. doi: 10.1111/mmi.13842. Epub 2017 Oct 22.
Light dependent processes are involved in the regulation of growth, development and enzyme production in Trichoderma reesei. The photoreceptors BLR1, BLR2 and ENV1 exert crucial functions in these processes. We analyzed the involvement of the transcription factor SUB1 in sexual development as well as secondary metabolism and its position in the light signaling cascade. SUB1 influences growth and in contrast to its homologue in N. crassa, SUB1 is not essential for fruiting body formation and male fertility in T. reesei, but required for female fertility. Accordingly, SUB1 is involved in the regulation of the pheromone system of T. reesei. Female sterility of mutants lacking env1 is rescued in triple mutants of blr1, blr2 and env1, but not in double mutants of these genes. Confrontation of strains lacking sub1 results in growth arrest prior to contact of the potential mating partners. This effect is at least in part due to altered secondary metabolite production. Additionally, together with BLR1 and BLR2, SUB1 is essential for spore pigmentation and transcription of pks4, and secondary metabolism is regulated by SUB1 in a light- and nutrient dependent manner. Our results hence indicate rewiring of several pathways targeted by SUB1 in T. reesei.
光依赖过程参与里氏木霉生长、发育和酶产生的调控。光感受器BLR1、BLR2和ENV1在这些过程中发挥关键作用。我们分析了转录因子SUB1在有性发育以及次级代谢中的作用及其在光信号级联反应中的位置。SUB1影响生长,与它在粗糙脉孢菌中的同源物不同,SUB1对里氏木霉子实体形成和雄性育性不是必需的,但对雌性育性是必需的。因此,SUB1参与里氏木霉信息素系统的调控。在blr1、blr2和env1的三突变体中,缺乏env1的突变体的雌性不育得到挽救,但在这些基因的双突变体中没有得到挽救。缺乏sub1的菌株对峙会导致潜在交配伙伴接触之前生长停滞。这种效应至少部分归因于次级代谢产物产生的改变。此外,与BLR1和BLR2一起,SUB1对孢子色素沉着和pks4的转录是必需的,并且次级代谢由SUB1以光和营养依赖的方式调控。因此,我们的结果表明里氏木霉中SUB1靶向的几条途径发生了重新布线。