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Does the High Nucleic Acid Content of Individual Bacterial Cells Allow Us To Discriminate between Active Cells and Inactive Cells in Aquatic Systems?

机译:单个细菌细胞的高核酸含量是否使我们能够区分水生系统中的活跃细胞和非活跃细胞?

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摘要

The nucleic acid contents of individual bacterial cells as determined with three different nucleic acid-specific fluorescent dyes (SYBR I, SYBR II, and SYTO 13) and flow cytometry were compared for different seawater samples. Similar fluorescence patterns were observed, and bacteria with high apparent nucleic acid contents (HNA) could be discriminated from bacteria with low nucleic acid contents (LNA). The best discrimination between HNA and LNA cells was found when cells were stained with SYBR II. Bacteria in different water samples collected from seven freshwater, brackish water, and seawater ecosystems were prelabeled with tritiated leucine and then stained with SYBR II. After labeling and staining, HNA, LNA, and total cells were sorted by flow cytometry, and the specific activity of each cellular category was determined from leucine incorporation rates. The HNA cells were responsible for most of the total bacterial production, and the specific activities of cells in the HNA population varied between samples by a factor of seven. We suggest that nucleic acid content alone can be a better indicator of the fraction of growing cells than total counts and that this approach should be combined with other fluorescent physiological probes to improve detection of the most active cells in aquatic systems.
机译:比较了用三种不同的核酸特异性荧光染料(SYBR I,SYBR II和SYTO 13)测定的单个细菌细胞的核酸含量,并比较了不同海水样品的流式细胞仪。观察到相似的荧光模式,并且可以将具有高表观核酸含量(HNA)的细菌与具有低核酸含量(LNA)的细菌区分开。当细胞用SYBR II染色时,发现HNA和LNA细胞之间的最佳区分。从七个淡水,微咸水和海水生态系统中收集的不同水样中的细菌预先用tri化的亮氨酸标记,然后用SYBR II染色。标记和染色后,通过流式细胞仪对HNA,LNA和总细胞进行分类,并根据亮氨酸掺入率确定每种细胞类别的比活性。 HNA细胞占细菌总数的大部分,而HNA群体中细胞的比活在样本之间相差7倍。我们建议单独使用核酸含量可以比总计数更好地指示正在生长的细胞比例,并且该方法应与其他荧光生理探针结合使用,以改善对水生系统中最活跃细胞的检测。

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