首页> 外文期刊>Applied Microbiology >The Impact of pH on Clostridioides difficile Sporulation and Physiology
【24h】

The Impact of pH on Clostridioides difficile Sporulation and Physiology

机译:pH对梭菌梭菌艰难症和生理学的影响

获取原文
       

摘要

Clostridioides difficile is a pathogenic bacterium that infects the human colon to cause diarrheal disease. Growth of the bacterium is known to be dependent on certain bile acids, oxygen levels, and nutrient availability in the intestine, but how the environmental pH can influence C. difficile is mostly unknown. Previous studies indicated that C. difficile modulates the intestinal pH, and prospective cohort studies have found a strong association between a more alkaline fecal pH and C. difficile infection. Based on these data, we hypothesized that C. difficile physiology can be affected by various pH conditions. In this study, we investigated the impact of a range of pH conditions on C. difficile to assess potential effects on growth, sporulation, motility, and toxin production in the strains 630Δ erm and {"type":"entrez-nucleotide","attrs":{"text":"R20291","term_id":"774925","term_text":"R20291"}}R20291. We observed pH-dependent differences in sporulation rate, spore morphology, and viability. Sporulation frequency was lowest under acidic conditions, and differences in cell morphology were apparent at low pH. In alkaline environments, C. difficile sporulation was greater for strain 630Δ erm , whereas {"type":"entrez-nucleotide","attrs":{"text":"R20291","term_id":"774925","term_text":"R20291"}}R20291 produced relatively high levels of spores in a broad range of pH conditions. Rapid changes in pH during exponential growth impacted sporulation similarly among the strains. Furthermore, we observed an increase in C. difficile motility with increases in pH, and strain-dependent differences in toxin production under acidic conditions. The data demonstrate that pH is an important parameter that affects C. difficile physiology and may reveal relevant insights into the growth and dissemination of this pathogen.IMPORTANCE Clostridioides difficile is an anaerobic bacterium that causes gastrointestinal disease. C. difficile forms dormant spores which can survive harsh environmental conditions, allowing their spread to new hosts. In this study, we determine how intestinally relevant pH conditions impact C. difficile physiology in the two divergent strains, 630Δ erm and {"type":"entrez-nucleotide","attrs":{"text":"R20291","term_id":"774925","term_text":"R20291"}}R20291. Our data demonstrate that low pH conditions reduce C. difficile growth, sporulation, and motility. However, toxin production and spore morphology were differentially impacted in the two strains at low pH. In addition, we observed that alkaline environments reduce C. difficile growth, but increase cell motility. When pH was adjusted rapidly during growth, we observed similar impacts on both strains. This study provides new insights into the phenotypic diversity of C. difficile grown under diverse pH conditions present in the intestinal tract, and demonstrates similarities and differences in the pH responses of different C. difficile isolates.
机译:梭氧化钛差异是一种感染人结肠引起腹泻病的病原细菌。已知细菌的生长依赖于肠中某些胆汁酸,氧水平和营养可用性,但环境pH如何影响C.艰难率大多是未知的。以前的研究表明,艰难梭菌调节肠pH值,并且前瞻性队列研究发现了更碱性粪便pH和C.艰难梭菌感染之间的强烈关联。基于这些数据,我们假设C.艰难梭菌生理学可能受到各种pH条件的影响。在这项研究中,我们研究了一系列pH艰难梭菌的影响,以评估菌株630Δmerm和{“entrez-核苷酸”的菌株中生长,孢子,运动和毒素产生的潜在影响:“entrez-核苷酸”,“ attrs“:{”text“:”r20291“,”term_id“:”774925“,”term_text“:”r20291“}} r20291。我们观察到孢子率,孢子形态和可行性的pH依赖性差异。奶粉在酸性条件下最低,细胞形态的差异在低pH下显而易见。在碱性环境中,C.艰难梭菌孢子率对于应变630ΔERM更大,而{“类型”:“Entrez-Nucleotide”,“attrs”:{“text”:“r20291”,“term_id”:“774925”,“term_text “:”R20291“}} R20291在广泛的pH条件下产生相对高水平的孢子。在菌株中,在指数增长期间pH的快速变化。此外,我们观察到酸性条件下的pH值增加的艰难梭菌性艰难力,以及毒素产量的应变依赖性差异。数据表明pH是影响C.艰难梭菌生理学的重要参数,并且可以揭示对该病原体的生长和传播的相关见解。分量梭菌差异是一种导致胃肠疾病的厌氧细菌。 C.艰难梭菌形式休眠孢子,可以存活恶劣的环境条件,使其蔓延到新的主持人。在这项研究中,我们确定两种发散菌株中的肠道差异C.艰难梭菌生理学的肠道生理学,630ΔERM和{“attrez核苷酸”,“attrs”:{“文本”:“r20291”,“r20291” Term_ID“:”774925“,”Term_Text“:”R20291“}} R20291。我们的数据表明,低pH条件降低C.艰难梭菌生长,孢子率和动力。然而,毒素生产和孢子形态在低pH下的两个菌株中差异地影响。此外,我们观察到碱性环境降低了艰难梭菌的生长,但增加了细胞运动性。当在生长期间迅速调节pH时,我们观察到对两种菌株的相似影响。本研究为在肠道中存在的不同pH条件下生长的C.艰难梭菌的表型多样性提供了新的见解,并证明了不同C.艰难梭菌分离物的pH反应的相似性和差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号