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首页> 外文期刊>Medycyna Weterynaryjna >Study of the nonculturable state of lactic acid bacteria cells under adverse growth conditionsOriginal Title (non-English) Badania stanu 'niehodowalnosci' komorek bakterii fermentacji mlekowej w niesprzyjajacych warunkach rozwoju [Polish]
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Study of the nonculturable state of lactic acid bacteria cells under adverse growth conditionsOriginal Title (non-English) Badania stanu 'niehodowalnosci' komorek bakterii fermentacji mlekowej w niesprzyjajacych warunkach rozwoju [Polish]

机译:不利生长条件下乳酸菌细胞不可培养状态的研究原始标题(非英语)。

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摘要

The reason for undertaking the research concerning the physiological state of lactic acid bacteria is closely associated with applications of these microorganisms in the food industry. An increased demand referring to microbiological analysis has been affected by the intensification of research assessing the physiological state of microorganisms in unfavorable for them conditions. In technological processes as well as in natural habitats microorganisms can encounter a variety of adverse conditions, arising from the influence of physical and chemical factors such as extremes in temperature, pH or presence of bacteriostatic agents. Therefore, the determination of the viability of bacteria may be challenging due to difficulties in the selection of suitable enumeration methods. The use of conventional methods that rely on the replication and colony formation on growth media is hindered by the decreased reproductive capacity of cells under detrimental conditions. As a result, alternative techniques which do not focus on cell proliferation, but on the metabolic activity or cell structure integrity are being favored. Approaches performing direct detection of different physiological parameters of microbes are connected with the application of modern fluorescence techniques, and in consequence with progress in microbiological research.
机译:进行关于乳酸菌的生理状态的研究的原因与这些微生物在食品工业中的应用密切相关。评估微生物不利于它们的生理状态的研究的加强影响了对微生物分析的需求增加。在技​​术过程中以及在自然栖息地中,微生物可能会遇到各种不利条件,这是由于物理和化学因素(例如温度,pH值的极端值或抑菌剂的存在)的影响而引起的。因此,由于在选择合适的计数方法上的困难,确定细菌的生存力可能具有挑战性。依赖于生长培养基上的复制和集落形成的常规方法的使用由于有害条件下细胞繁殖能力的降低而受到阻碍。结果,不关注细胞增殖而是关注代谢活性或细胞结构完整性的替代技术受到青睐。直接检测微生物不同生理参数的方法与现代荧光技术的应用有关,因此随着微生物学研究的进展。

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