首页> 外文期刊>Frontiers in Microbiology >Gene Expression Response of Salmonella enterica Serotype Enteritidis Phage Type 8 to Subinhibitory Concentrations of the Plant-Derived Compounds Trans-Cinnamaldehyde and Eugenol
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Gene Expression Response of Salmonella enterica Serotype Enteritidis Phage Type 8 to Subinhibitory Concentrations of the Plant-Derived Compounds Trans-Cinnamaldehyde and Eugenol

机译:沙门氏菌血清型肠炎噬菌体8型基因表达对植物源性化合物反式-肉桂醛和丁香酚亚抑制浓度的响应

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Background: Salmonella Enteritidis phage type 8 (PT8) is a major poultry-associated Salmonella strain implicated in foodborne outbreaks in the United States. We previously reported that two plant-derived compounds generally recognized as safe (GRAS), trans -cinnamaldehyde (TC), and eugenol (EG), significantly reduced S . Enteritidis colonization in broiler and layer chickens. To elucidate potential PT8 genes affected by TC and EG during colonization, a whole-genome microarray analysis of the bacterium treated with TC and EG was conducted. Results: S . Enteritidis PT8 was grown in Luria-Bertani broth at 37°C to an OD_(600)of ~0.5. Subinhibitory concentrations (SICs; concentration that does not inhibit bacterial growth) of TC (0.01%; 0.75 mM) or EG (0.04%; 2.46 mM) were then added to the culture. S . Enteritidis PT8 RNA was extracted before and 30 min after TC or EG addition. Labeled cDNA from three replicate experiments was subsequently hybridized to a microarray of over 99% of S . Enteritidis PT4 genes, and the hybridization signals were quantified. The plant-derived compounds down-regulated ( P < 0.005) expression of S . Enteritidis PT8 genes involved in flagellar motility, regulation of the Salmonella Pathogenicity Island 1, and invasion of intestinal epithelial cells. TC and EG also suppressed transcription of genes encoding multiple transport systems and outer membrane proteins. Moreover, several metabolic and biosynthetic pathways in the pathogen were down-regulated during exposure to the plant-derived compounds. Both TC and EG stimulated the transcription of heat shock genes, such as dnaK, dnaJ, ibpB , and ibpA in S . Enteritidis PT8 ( P < 0.005). The results obtained from microarray were validated using a quantitative real-time PCR. Conclusion: The plant-derived compounds TC and EG exert antimicrobial effects on S . Enteritidis PT8 by affecting multiple genes, including those associated with virulence, colonization, cell membrane composition, and transport systems.
机译:背景:肠炎沙门氏菌噬菌体8型(PT8)是一种与家禽有关的主要沙门氏菌菌株,与美国的食源性暴发有关。我们之前曾报道过,通常公认安全的两种植物来源化合物(GRAS),反式肉桂醛(TC)和丁子香酚(EG)均显着降低了S。肠炎菌在肉鸡和蛋鸡中的定殖。为了阐明定殖过程中受TC和EG影响的潜在PT8基因,对经过TC和EG处理的细菌进行了全基因组微阵列分析。结果:S。 Enteritidis PT8在Luria-Bertani肉汤中于37°C生长至OD_(600)为〜0.5。然后将亚抑制浓度(SIC;不抑制细菌生长的浓度)的TC(0.01%; 0.75 mM)或EG(0.04%; 2.46 mM)添加到培养物中。 。在添加TC或EG之前和之后30分钟提取肠炎PT8 RNA。随后将来自三个重复实验的标记cDNA与S超过99%的微阵列杂交。肠炎肠杆菌PT4基因,并定量杂交信号。植物来源的化合物下调了S的表达(P <0.005)。肠炎PT8基因参与鞭毛运动,沙门氏菌致病岛1的调节和肠上皮细胞的侵袭。 TC和EG还抑制了编码多种转运系统和外膜蛋白的基因的转录。此外,在暴露于植物衍生的化合物期间,病原体中的一些代谢和生物合成途径被下调。 TC和EG都刺激了S中热休克基因的转录,例如dnaK,dnaJ,ibpB和ibpA。肠炎PT8(P <0.005)。使用定量实时PCR验证了从微阵列获得的结果。结论:植物来源的化合物TC和EG对S具有抗菌作用。肠炎PT8通过影响多个基因,包括与毒力,定殖,细胞膜组成和转运系统有关的基因。

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