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Temperature-Dependent Production of Various PlcR-Controlled Virulence Factors in Bacillus weihenstephanensis Strain KBAB4

机译:魏恩斯特凡芽孢杆菌KBAB4菌株中各种PlcR控制的毒力因子的温度依赖性产生

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The Bacillus cereus sensu lato complex has recently been divided into several phylogenetic groups with clear differences in growth temperature range. However, only a few studies have investigated the actual pathogenic potential of the psychrotolerant strains of the B. cereus group at low temperature, and little information is available concerning gene expression at low temperature. We found that vegetative cells of the psychrotolerant B. weihenstephanensis strain KBAB4 were pathogenic against the model insect Galleria mellonella at 15°C but not at 30°C. A similar temperature-dependent difference also was observed for the supernatant, which was cytotoxic to Vero epithelial cell lines and to murine macrophage J774 cells at 15°C but not at 30°C. We therefore determined the effect of low temperature on the production of various proteins putatively involved in virulence using two-dimensional protein gel electrophoresis, and we showed that the production of the Hbl enterotoxin and of two proteases, NprB and NprP2, was greater at a growth temperature of 15°C than at 30°C. The quantification of the mRNA levels for these virulence genes by real-time quantitative PCR at both temperatures showed that there was also more mRNA present at 15°C than at 30°C. We also found that at 15°C, hbl mRNA levels were maximal in the mid- to late exponential growth phase. In conclusion, we found that the higher virulence of the B. cereus KBAB4 strain at low temperature was accompanied by higher levels of the production of various known PlcR-controlled virulence factors and by a higher transcriptional activity of the corresponding genes.
机译:蜡样芽胞杆菌复合体最近已被划分为几个系统发育组,在生长温度范围上存在明显差异。但是,只有很少的研究调查了蜡状芽孢杆菌组在低温下的抗精神病病毒株的实际致病潜力,而且关于低温基因表达的信息很少。我们发现,在15°C而不是30°C时,抗精神病的魏氏史威生芽孢杆菌KBAB4的营养细胞对模型昆虫梅勒菌具有致病性。在上清液中也观察到类似的温度依赖性差异,其在15℃而非30℃下对Vero上皮细胞系和鼠巨噬细胞J774细胞具有细胞毒性。因此,我们使用二维蛋白质凝胶电泳确定了低温对各种可能与毒力有关的蛋白质产生的影响,并且我们表明Hbl肠毒素和两种蛋白酶NprB和NprP2的产生在生长时更大。 15°C的温度比30°C的温度高。通过实时定量PCR在这两个温度下对这些毒力基因的mRNA水平进行定量显示,与30°C相比,在15°C存在的mRNA也更多。我们还发现,在15°C下,hbl mRNA水平在指数生长期的中晚期达到最大值。总之,我们发现蜡状芽孢杆菌KBAB4菌株在低温下具有较高的毒力,同时伴随着各种已知的PlcR控制的毒力因子生产水平的提高和相应基因的更高转录活性。

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