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利用连续培养技术分析空肠弯曲菌的球菌细胞形成以及氧化应激的重要性。

Analysis of coccal cell formation by Campylobacter jejuni using continuous culture techniques, and the importance of oxidative stress.

作者信息

Harvey P, Leach S

机构信息

Centre for Applied Microbiology and Research, Portion down, Salisbury, UK.

出版信息

J Appl Microbiol. 1998 Aug;85(2):398-404. doi: 10.1046/j.1365-2672.1998.00532.x.

Abstract

Campylobacter jejuni is an important human gastrointestinal pathogen. In hostile environments it may adapt its physiology to prolong survival, potentially including the adoption of a viable, non-culturable form and a change to coccal cell morphology. By independently controlling the individual parameters of continuous cultures of Camp. jejuni (e.g. pH, nutrient limitation, growth rate, etc.), coccal cell formation was shown to be elicited only be high oxygen tension in conjunction with reduced carbon concentration. Electron microscopy revealed degradative changes in these cells. This occurred as a transient response over 48 h coincident with a large reduction in maximum growth rate and viable count. Kinetic analysis of the biomass reduction of the cultures demonstrated that significant underlying growth was maintained, with the subsequent selection of a more oxygen-resistant population of cells and reversion to spiral morphology. Coccal cells appear to be predominantly a degenerate form of Camp. jejuni resulting from oxidative damage. While some of these coccal cells may recover, the more interesting population of cells is probably that which retains, or regains, spiral morphology during adaptation to oxidative stress.

摘要

空肠弯曲菌是一种重要的人类胃肠道病原体。在恶劣环境中,它可能会调整自身生理机能以延长存活时间,这可能包括形成一种活的、不可培养的形式,并转变为球菌形态。通过独立控制空肠弯曲菌连续培养的各个参数(例如pH值、营养限制、生长速率等),研究发现只有在高氧张力和碳浓度降低的共同作用下才会引发球菌细胞的形成。电子显微镜显示这些细胞发生了降解变化。这是在48小时内的一种短暂反应,同时最大生长速率和活菌数大幅下降。对培养物生物量减少的动力学分析表明,细胞仍保持显著的潜在生长能力,随后会选择出更耐氧的细胞群体并恢复为螺旋形态。球菌细胞似乎主要是空肠弯曲菌因氧化损伤而产生的一种退化形式。虽然其中一些球菌细胞可能会恢复,但更值得关注的细胞群体可能是那些在适应氧化应激过程中保留或重新获得螺旋形态的细胞。

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