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Bacillus cereus ATCC 14579 RpoN (Sigma 54) Is a Pleiotropic Regulator of Growth Carbohydrate Metabolism Motility Biofilm Formation and Toxin Production

机译:蜡样芽孢杆菌ATCC 14579 RpoN(Sigma 54)是生长糖代谢运动生物膜形成和毒素产生的多效调节剂。

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摘要

Sigma 54 is a transcriptional regulator predicted to play a role in physical interaction of bacteria with their environment, including virulence and biofilm formation. In order to study the role of Sigma 54 in Bacillus cereus, a comparative transcriptome and phenotypic study was performed using B. cereus ATCC 14579 WT, a markerless rpoN deletion mutant, and its complemented strain. The mutant was impaired in many different cellular functions including low temperature and anaerobic growth, carbohydrate metabolism, sporulation and toxin production. Additionally, the mutant showed lack of motility and biofilm formation at air-liquid interphase, and this correlated with absence of flagella, as flagella staining showed only WT and complemented strain to be highly flagellated. Comparative transcriptome analysis of cells harvested at selected time points during growth in aerated and static conditions in BHI revealed large differences in gene expression associated with loss of phenotypes, including significant down regulation of genes in the mutant encoding enzymes involved in degradation of branched chain amino acids, carbohydrate transport and metabolism, flagella synthesis and virulence factors. Our study provides evidence for a pleiotropic role of Sigma 54 in B. cereus supporting its adaptive response and survival in a range of conditions and environments.
机译:Sigma 54是一种转录调节因子,预计在细菌与其环境的物理相互作用(包括毒力和生物膜形成)中发挥作用。为了研究Sigma 54在蜡样芽胞杆菌中的作用,使用蜡样芽孢杆菌ATCC 14579 WT,无标记rpoN缺失突变体及其互补菌株进行了比较转录组和表型研究。该突变体的许多不同细胞功能受损,包括低温和厌氧生长,碳水化合物代谢,孢子形成和毒素产生。另外,该突变体在气液界面显示缺乏运动性和生物膜形成,并且与鞭毛的缺乏相关,因为鞭毛染色仅显示野生型和互补菌株高度鞭毛。在BHI的充气和静态条件下生长期间在选定时间点收获的细胞的转录组比较分析显示,与表型缺失相关的基因表达存在巨大差异,包括与支链氨基酸降解有关的突变型编码酶的基因显着下调,碳水化合物的运输和代谢,鞭毛的合成和毒力因子。我们的研究提供了证据证明Sigma 54在蜡状芽孢杆菌中具有多效性,可支持其在各种条件和环境下的适应性反应和生存。

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