生物膜
运动性
大肠杆菌
菌毛
生物
微生物学
拉伤
毒力
细菌
基因
细胞生物学
生物化学
遗传学
解剖
作者
Yi Gou,Weiqi Liu,Jing Jing Wang,Ling Ling Tan,Bin Hong,Linxia Guo,Haiquan Liu,Yingjie Pan,Yong Zhao
出处
期刊:Canadian Journal of Microbiology
[Canadian Science Publishing]
日期:2019-05-10
卷期号:65 (9): 691-702
被引量:26
标识
DOI:10.1139/cjm-2019-0100
摘要
Generally, cell motility and biofilm formation are tightly regulated. The QseBC two-component system (TCS) serves as a bridge for bacterial signal transmission, in which the protein QseB acts as a response regulator bacterial motility, biofilm formation, and virulence. The mechanisms that govern the interaction between QseBC and their functions have been studied in general, but the regulatory role of QseB on bacterial motility and biofilm formation is unknown. In this study, the CRISPR-Cas9 system was used to construct the Escherichia coli MG1655ΔqseB strain (strain ΔqseB), and the effects of the qseB gene on changes in motility and biofilm formation in the wild type (WT) were determined. The motility assay results showed that the ΔqseB strain had higher (p < 0.05) motility than the WT strain. However, there was no difference in the formation of biofilm between the ΔqseB and WT strains. Real-time quantitative PCR illustrated that deletion of qseB in the WT strain downregulated expression of the type I pili gene fimA. Therefore, we might conclude that the ΔqseB induced the downregulation of fimA, which led to asynchrony between motility and biofilm formation in E. coli, providing new insight into the functional importance of QseB in regulating cell motility and biofilm formation.
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