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Ecological implications of an improved direct viable count method for aquatic bacteria.

机译:改进的水生细菌直接可行计数方法的生态意义。

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The direct viable count method first described by Kogure et al. (Can. J. Microbiol. 25:415-420, 1979) was improved by using an antibiotic cocktail instead of nalidixic acid alone. We screened 100 marine isolates from two coastal areas for their sensitivities to five replication-inhibiting antibiotics, including four quinolones (nalidixic, piromidic, and pipemidic acids and ciprofloxacin) and one (beta)-lactam (cephalexin). It was shown that growth inhibition of all isolates cannot be readily achieved by using a single antibiotic. Inhibition was much more efficient when all the antibiotics were combined, making it possible to use this method with natural communities. In combination, the concentration of each antibiotic could be lowered and the incubation time could be increased without any growth. Under such conditions, it was shown that the fraction of substrate-responsive cells within natural marine communities is much greater (1 to 2 orders of magnitude) than those reported by traditional procedures. Furthermore, the new procedure made substrate-responsive cells more clearly distinguishable. These improvements resulted in an increased incubation time and were related to metabolic expression of slow-growing cells and/or to the recovery of starved cells. The increased fraction of viable cells within marine communities has ecological implications on the metabolic role of nonculturable cells.
机译:直接可行计数法首先由Kogure等人描述。 (Can.J.Microbiol.25:415-420,1979)通过使用抗生素混合物代替单独的萘啶酸而得到改善。我们筛选了两个沿海地区的100个海洋分离株对五种抑制复制的抗生素的敏感性,其中包括四种喹诺酮类(纳洛迪克,吡iro胺和哌pipe酸和环丙沙星)和一种(β)-内酰胺(头孢氨苄)。结果表明,使用单一抗生素不能轻易实现所有分离株的生长抑制。当所有抗生素组合使用时,抑制作用更为有效,这使得在自然界中使用这种方法成为可能。结合起来,每种抗生素的浓度可以降低,并且孵育时间可以增加而不增加。在这种条件下,研究表明,天然海洋群落中底物反应性细胞的比例要比传统方法报道的要大得多(1至2个数量级)。此外,新程序使底物反应性细胞更加清晰可辨。这些改善导致孵育时间增加,并且与生长缓慢的细胞的代谢表达和/或饥饿细胞的恢复有关。海洋社区中活细胞比例的增加对不可培养细胞的代谢作用具有生态学意义。

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