Liu Kuimei, Dong Yanmei, Wang Fangzhong, Jiang Baojie, Wang Mingyu, Fang Xu
State Key Laboratory of Microbial Technology, School of Life Sciences, Shandong University, Jinan, 250100, China.
Appl Microbiol Biotechnol. 2016 Jan;100(2):769-79. doi: 10.1007/s00253-015-7059-2. Epub 2015 Oct 19.
Homologs of the velvet protein family are encoded by the ve1, vel2, and vel3 genes in Trichoderma reesei. To test their regulatory functions, the velvet protein-coding genes were disrupted, generating Δve1, Δvel2, and Δvel3 strains. The phenotypic features of these strains were examined to identify their functions in morphogenesis, sporulation, and cellulase expression. The three velvet-deficient strains produced more hyphal branches, indicating that velvet family proteins participate in the morphogenesis in T. reesei. Deletion of ve1 and vel3 did not affect biomass accumulation, while deletion of vel2 led to a significantly hampered growth when cellulose was used as the sole carbon source in the medium. The deletion of either ve1 or vel2 led to the sharp decrease of sporulation as well as a global downregulation of cellulase-coding genes. In contrast, although the expression of cellulase-coding genes of the ∆vel3 strain was downregulated in the dark, their expression in light condition was unaffected. Sporulation was hampered in the ∆vel3 strain. These results suggest that Ve1 and Vel2 play major roles, whereas Vel3 plays a minor role in sporulation, morphogenesis, and cellulase expression.
里氏木霉中,天鹅绒蛋白家族的同源物由ve1、vel2和vel3基因编码。为了测试它们的调控功能,破坏了天鹅绒蛋白编码基因,构建了Δve1、Δvel2和Δvel3菌株。检测这些菌株的表型特征,以确定它们在形态发生、孢子形成和纤维素酶表达中的功能。三个天鹅绒缺陷型菌株产生了更多的菌丝分支,这表明天鹅绒家族蛋白参与了里氏木霉的形态发生。缺失ve1和vel3不影响生物量积累,而当培养基中以纤维素作为唯一碳源时,缺失vel2会导致生长显著受阻。缺失ve1或vel2会导致孢子形成急剧减少以及纤维素酶编码基因的整体下调。相比之下,虽然Δvel3菌株的纤维素酶编码基因在黑暗条件下表达下调,但在光照条件下其表达不受影响。Δvel3菌株的孢子形成受到阻碍。这些结果表明,Ve1和Vel2起主要作用,而Vel3在孢子形成、形态发生和纤维素酶表达中起次要作用。