Chen Xiuzhen, Song Bingran, Liu Minglu, Qin Lina, Dong Zhiyang
State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.
National and Local Joint Engineering Research Center of Industrial Microbiology and Fermentation Technology, College of Life Sciences, Fujian Normal University, Fuzhou 350117, China.
J Fungi (Basel). 2021 Jul 29;7(8):613. doi: 10.3390/jof7080613.
Vib1, a member of the Ndt80/PhoG-like transcription factor family, has been shown to be essential for cellulase production of . Here, we combined transcriptomic and genetic analyses to gain mechanistic insights into the roles of Vib1 during cellulose degradation. Our transcriptome analysis showed that the deletion caused 586 genes with decreased expression and 431 genes with increased expression on cellulose. The downregulated genes were enriched for Gene Ontology terms associated with carbohydrate metabolism, transmembrane transport, oxidoreductase activity, and transcription factor activity. Of the 258 genes induced by cellulose, 229 showed no or decreased expression in Δ on cellulose, including almost all (hemi)cellulase genes, crucial sugar transporter genes (IDs:69957, 3405), and the genes encoding main transcriptional activators Xyr1 and Ace3. Additionally, Vib1 also regulated the expression of genes involved in secondary metabolism. Further comparison of the transcriptomes of Δ and Δ in cellulose revealed that the genes regulated by Vib1 had much overlap with Xyr1 targets especially for the gene set induced by cellulose, presumably whose expression requires the cooperativity between Vib1 and Xyr1. Genetic evidence indicated that Vib1 regulates cellulase gene expression partially via Xyr1. Our results will provide new clues for strain improvement.
Vib1是Ndt80/PhoG样转录因子家族的成员,已被证明对纤维素酶的产生至关重要。在此,我们结合转录组学和遗传学分析,以深入了解Vib1在纤维素降解过程中的作用机制。我们的转录组分析表明,缺失导致586个基因表达下降,431个基因在纤维素上表达增加。下调的基因在与碳水化合物代谢、跨膜运输、氧化还原酶活性和转录因子活性相关的基因本体术语中富集。在纤维素诱导的258个基因中,229个在纤维素上的Δ中未表达或表达下降,包括几乎所有(半)纤维素酶基因、关键的糖转运蛋白基因(ID:69957、3405)以及编码主要转录激活因子Xyr1和Ace3的基因。此外,Vib1还调节参与次级代谢的基因的表达。纤维素中Δ和Δ转录组的进一步比较表明,Vib1调控的基因与Xyr1的靶标有很大重叠,特别是对于纤维素诱导的基因集,推测其表达需要Vib1和Xyr1之间的协同作用。遗传证据表明,Vib1部分通过Xyr1调节纤维素酶基因的表达。我们的结果将为菌株改良提供新的线索。