He Ronglin, Ma Lijuan, Li Chen, Jia Wendi, Li Demao, Zhang Dongyuan, Chen Shulin
Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, 32 West 7th Avenue, Tianjin Airport Economic Area, Tianjin 300308, China.
College of Biotechnology, Tianjin University of Science and Technology, 13th Avenue, Tianjin Economic and Technological Development Area (TEDA), Tianjin 300457, China.
Enzyme Microb Technol. 2014 Dec;67:17-26. doi: 10.1016/j.enzmictec.2014.08.013. Epub 2014 Sep 6.
Fungi grow over a relatively wide pH range and adapt to extracellular pH through a genetic regulatory system mediated by a key component PacC, which is a pH transcription regulator. The cellulase production of the filamentous fungi Trichoderma reesei is sensitive to ambient pH. To investigate the connection between cellulase expression regulation and ambient pH, an ortholog of Aspergillus nidulans pacC, Trpac1, was identified and functionally characterized using a target gene deletion strategy. Deleting Trpac1 dramatically increased the cellulase production and the transcription levels of the major cellulase genes at neutral pH, which suggested Trpac1 is involved in the regulation of cellulase production. It was further observed that the expression levels of transcription factors xyr1 and ace2 also increased in the ΔTrpac1 mutant at neutral pH. In addition, the ΔTrpac1 mutant exhibited conidiation defects under neutral and alkaline pH. These results implied that Trpac1 in involved in growth and development process and cellulase gene expression in T. reesei.
真菌能在相对较宽的pH范围内生长,并通过由关键组分PacC介导的遗传调控系统适应细胞外pH,PacC是一种pH转录调节因子。丝状真菌里氏木霉的纤维素酶产生对环境pH敏感。为了研究纤维素酶表达调控与环境pH之间的联系,利用靶基因缺失策略鉴定并功能表征了构巢曲霉pacC的直系同源基因Trpac1。缺失Trpac1显著增加了中性pH下的纤维素酶产生以及主要纤维素酶基因的转录水平,这表明Trpac1参与纤维素酶产生的调控。进一步观察到,在中性pH下,转录因子xyr1和ace2的表达水平在ΔTrpac1突变体中也有所增加。此外,ΔTrpac1突变体在中性和碱性pH下表现出分生孢子形成缺陷。这些结果表明Trpac1参与里氏木霉的生长发育过程和纤维素酶基因表达。