空肠弯曲杆菌菌株的生长速度和代谢特征因腹泻表现而异。

IF 2
Jennifer M Bosquez, Craig T Parker, Ben Pascoe, Kerry K Cooper
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引用次数: 0

摘要

介绍。空肠弯曲杆菌是全球细菌性肠胃炎的主要原因。空肠梭菌感染可导致人类出现两种不同的腹泻表现:水样腹泻或血性/炎症性腹泻。假设/差距语句。目前,对空肠梭菌和/或与引发这两种不同腹泻表现相关的宿主因素知之甚少。我们假设这些因素可能包括与水样腹泻和血性/炎症性腹泻相关的空肠梭菌菌株之间的生长和代谢性状差异。利用具有明确腹泻表现的空肠梭菌在新生仔猪模型中,我们旨在评估腹泻表现组在温度依赖性生长速率、运动性、生物膜产量和碳利用方面的差异。利用表型微阵列对192种不同碳源的菌株进行初步评估,然后在37°c和/或42°c下进行特定碳利用、生长、运动性和生物膜测定。我们发现,在37°C时,与血性/炎症性腹泻相关的空肠梭菌菌株相比,水样腹泻相关的空肠梭菌菌株的生长速度要快得多。然而,两组之间在42°C下没有显著的生长差异,这是由于血性/炎症性腹泻相关菌株在42°C下比在37°C下生长得更快。此外,在37°C时,我们发现水样腹泻相关菌株的l-焦点利用率显著较高,而血性/炎症性腹泻相关菌株的l-谷氨酰胺利用率显著较高。结果表明,水样和/或血性/炎症性腹泻相关空肠梭菌菌株之间存在明显的代谢适应,特别是在37°C时,这可能是与不同腹泻表现相关的因素之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Growth rates and metabolic traits differ by diarrhoeal manifestation in <i>Campylobacter jejuni</i> strains.

Growth rates and metabolic traits differ by diarrhoeal manifestation in <i>Campylobacter jejuni</i> strains.

Growth rates and metabolic traits differ by diarrhoeal manifestation in <i>Campylobacter jejuni</i> strains.

Growth rates and metabolic traits differ by diarrhoeal manifestation in Campylobacter jejuni strains.

Introduction . Campylobacter jejuni is the leading cause of bacterial gastroenteritis worldwide. Infections with C. jejuni can result in two different diarrhoeal manifestations in humans: watery diarrhoea or bloody/inflammatory diarrhoea.Hypothesis/Gap Statement. Currently, little is known about C. jejuni and/or host factors associated with the elicitation of these two distinct diarrhoeal manifestations. We hypothesize that these factors may include growth and metabolic trait differences between C. jejuni strains associated with watery diarrhoea and bloody/inflammatory diarrhoea.Aim. Using C. jejuni strains with a defined diarrhoeal manifestation in the neonatal piglet model, we aimed to assess differences in temperature-dependent growth rates, motility, biofilm production and carbon utilization between diarrhoeal manifestation groups.Methodology. Strains were initially assessed for 192 different carbon sources using phenotypic microarrays followed by specific carbon utilization, growth, motility and biofilm assays at 37 and/or 42 °C.Results. We found that at 37 °C, watery diarrhoea-associated C. jejuni strains grew significantly faster compared with bloody/inflammatory diarrhoea-associated C. jejuni strains. However, there was no significant growth difference at 42 °C between the groups, due to bloody/inflammatory diarrhoea-associated strains growing faster at 42 °C compared with 37 °C. Additionally, at 37 °C, we found that l-fucose utilization was significantly higher among watery diarrhoea-associated strains, while l-glutamine utilization was significantly higher among bloody/inflammatory diarrhoea-associated strains.Conclusion. The results indicate there are distinct metabolic adaptations between watery and/or bloody/inflammatory diarrhoea-associated C. jejuni strains particularly at 37 °C, which may be one of the factors associated with differing diarrhoeal manifestations.

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