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Differential gene expression of Listeria monocytogenes during high hydrostatic pressure processing

机译:高静压加工期间李斯特菌单核细胞增生的差异基因表达

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High hydrostatic pressure processing (HPP) is currently being used as a treatment for certain foods to control the presence of food-borne pathogens, such as Listeria monocytogenes. Genomic microarray analysis was performed to determine the effects of HPP on L. monocytogenes in order to understand how it responds to mechanical stress injury. Reverse transcriptase PCR analysis of tufA and rpoC indicated that the reduction of mRNA expression in HPP-treated cells was dependent on intensity and time of the treatment. Treatments of 400 and 600?MPa for 5?min on cells in the exponential growth phase, though leading to partial or complete cellular inactivation, still resulted in measurable relative differential gene expression. Gene set enrichment analysis indicated that HPP induced increased expression of genes associated with DNA repair mechanisms, transcription and translation protein complexes, the septal ring, the general protein translocase system, flagella assemblage and chemotaxis, and lipid and peptidoglycan biosynthetic pathways. On the other hand, HPP appears to suppress a wide range of energy production and conversion, carbohydrate metabolism and virulence-associated genes accompanied by strong suppression of the SigB and PrfA regulons. HPP also affected genes controlled by the pleotrophic regulator CodY. HPP-induced cellular damage appears to lead to increased expression of genes linked to sections of the cell previously shown in bacteria to be damaged or altered during HPP exposure and suppression of gene expression associated with cellular growth processes and virulence.
机译:目前使用高静水压加工(HPP)作为一种治疗某些食物的治疗,以控制食品传播病原体的存在,例如Histeria单核细胞增生。进行基因组微阵列分析以确定HPP对单核细胞增生的影响,以了解如何应对机械应力损伤。曲调转录酶PCR分析和RPOC表明HPP处理细胞中mRNA表达的还原取决于治疗的强度和时间。在指数生长阶段的细胞中的治疗为400和600?MPA,但导致部分或完全细胞失活,仍然导致可测量的相对差异基因表达。基因设定富集分析表明,HPP诱导与DNA修复机制,转录和翻译蛋白复合物,隔膜环,一般蛋白译团酶系统,鞭毛组合和趋化性的基因表达增加,以及脂质和肽聚糖生物合成途径。另一方面,HPP似乎抑制了广泛的能量产量和转化,碳水化合物代谢和毒力相关基因伴随着SIGB和PRFA调节件的强烈抑制。 HPP还会影响受胃促肾上腺调节器Cody控制的基因。 HPP诱导的细胞损伤似乎导致与先前在细菌中所示的细胞部分相关的基因表达增加,以在HPP暴露期间损坏或改变,并抑制与细胞生长过程和毒力相关的基因表达。

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