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Flow cytometric analysis of the cellular DNA content of Salmonella typhimurium and Alteromonas haloplanktis during starvation and recovery in seawater.

机译:海水饥饿和恢复过程中鼠伤寒沙门氏菌和嗜盐链霉菌细胞DNA含量的流式细胞仪分析。

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摘要

Flow cytometry was used to investigate the heterogeneity of the DNA content of Salmonella typhimurium and Alteromonas haloplanktis cells that were starved and allowed to recover in seawater. Hoechst 33342 (bisbenzimide) was used as a DNA-specific dye to discriminate between DNA subpopulations. The DNA contents of both strains were heterogeneous during starvation. S. typhimurium cells contained one or two genomes, and A. haloplanktis cells contained up to six genomes. S. typhimurium genomes were fully replicated at the onset of starvation. Each replication cycle was completed in the early stage of starvation for A. haloplanktis by stopping cells in the partition step of the cell cycle prior to division. Multigenomic marine cells can undergo rapid cell division without DNA synthesis upon recovery, resulting in large fluctuations in the DNA contents of individual cells. In contrast, the heterogeneity of the DNA distribution of S. typhimurium cells was preserved during recovery. The fluctuations in the DNA fluorescence of this strain seem to be due to topological changes in DNA. Flow cytometry may provide a new approach to understanding dynamic and physiological changes in bacteria by detecting cellular heterogeneity in response to different growth conditions.
机译:流式细胞仪用于研究饿死并允许其在海水中恢复的鼠伤寒沙门氏菌和嗜盐链霉菌DNA含量的异质性。 Hoechst 33342(双苯甲酰亚胺)用作DNA特异性染料,可区分DNA亚群。在饥饿期间,两种菌株的DNA含量均不相同。鼠伤寒沙门氏菌细胞包含一个或两个基因组,而嗜盐链球菌细胞最多包含六个基因组。饥饿开始时鼠伤寒沙门氏菌基因组被完全复制。通过在分裂之前在细胞周期的分配步骤中停止细胞,在饥饿的早期阶段中完成了每个复制周期。多基因组海洋细胞可以快速分裂,而回收后不会合成DNA,从而导致单个细胞的DNA含量出现较大波动。相反,鼠伤寒沙门氏菌DNA分布的异质性在恢复过程中得以保留。该菌株DNA荧光的波动似乎是由于DNA的拓扑变化所致。流式细胞术可以通过检测细胞对异种生长条件的异质性,提供一种了解细菌动态和生理变化的新方法。

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