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Evaluation of cell activity and of methods for the cultivation of bacteria from a natural lake community

机译:评估天然湖泊群落中细胞活性和细菌培养方法

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The viability and culturability of chemoheterotrophic bacteria in Zwischenahner Meer, a shallow eutrophic lake in Northern Germany, were assessed by different techniques. The fraction of metabolically active cells was measured by the CTC reduction method. At three sampling times, numbers of CTC-reducing cells represented only a minor fraction ( less than or equal to 8%) of the total cell count. Only a slight stimulation of CTC reduction was observed upon the addition of single carbon substrates or substrate mixtures. A medium mimicking the low natural ion concentrations in freshwater was devised and used for the cultivation of bacteria in most probable number (MPN) series and on membrane filters. Similar to the number of CTC-reducing cells, the number of culturable cells as determined in MPN series never exceeded 7% of the total cell count with any of the carbon substrates tested. This indicated that the type of carbon substrate was not the major determinant of the rather low culturability. However, we observed a significant inhibition of bacterial growth in MPN series in which the typical R2A medium was used, or when phosphate buffer instead of HEPES was employed. In contrast to the low numbers of CTC-reducing cells and the low MPN values, up to 58% of the bacterial cells could divide on membrane filters incubated on top of the same type of medium that had been used in the MPN series. It is concluded that most of the bacteria in Zwischenahner Meer are able to grow and divide, but do not reach high cell densities even in improved culture media. Therefore, the majority of bacteria may be classified as viable but nonculturable, but would not be detected by the CTC reduction method.
机译:通过不同的技术评估了德国北部浅水富营养化湖泊Zwischenahner Meer中的化学营养型细菌的生存能力和可培养性。通过CTC还原法测量代谢活性细胞的分数。在三个采样时间,减少CTC的细胞数量仅占总细胞数量的一小部分(小于或等于8%)。添加单一碳底物或底物混合物后,仅观察到轻微的CTC降低刺激。设计了一种模仿淡水中低自然离子浓度的培养基,并将其用于最可能数(MPN)系列和膜滤器上的细菌培养。与减少CTC的细胞数量相似,MPN系列测定的可培养细胞数量从未超过任何测试的碳底物的总细胞数的7%。这表明碳底物的类型不是较低可培养性的主要决定因素。但是,我们观察到在使用典型R2A培养基的MPN系列中,或者在使用磷酸盐缓冲液代替HEPES的MPN系列中,细菌的生长受到显着抑制。与减少CTC的细胞数量少和MPN值低相反,多达58%的细菌细胞可以在膜滤器上分裂,而膜滤器则是在MPN系列所用的同一类型培养基上培养的。结论是Zwischenahner Meer中的大多数细菌都能够生长和分裂,但即使在改良的培养基中也无法达到高细胞密度。因此,大多数细菌可被分类为可存活但不可培养,但不能通过CTC还原方法检测到。

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