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Influence of Viable Cells on the Resuscitation of Dormant Cells in Micrococcus luteus Cultures Held in an Extended Stationary Phase: the Population Effect

机译:活细胞对扩展固定期举行的黄斑微球菌培养物中休眠细胞复苏的影响:种群效应

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A high proportion of Micrococcus luteus cells in cultures which had been starved for 3 to 6 months lost the ability to grow and form colonies on agar plates but could be resuscitated from their dormancy by incubation in an appropriate liquid medium (A. S. Kaprelyants and D. B. Kell, Appl. Environ. Microbiol. 59:3187-3196, 1993). In the present work, such cultures were studied by both flow cytometry and conventional microbiological methods and were found to contain various numbers of viable cells. Pretreatment of such cultures with penicillin G, and subsequent dilution, was used to vary this number. When the initial number of colony-forming cells per 30-ml flask was approximately nine (±five) or more, resuscitation of 10 to 40% of the cells, and thus culture growth, was observed. The lag period before the appearance of a population of cells showing significant accumulation of the fluorescent dye rhodamine 123 (i.e., of cells with measurable membrane energization) decreased from 70 to 27 h when the number of viable cells was increased from 30 to 105 per flask, while the lag period before an observable increase in the number of colony-forming cells occurred was almost constant (at some 20 h). Provided there were more than nine (±five) initially viable cells per flask, the number of initially viable cells did not affect the final percentage of resuscitable cells in the culture. The lag period could be ascribed in part to the time taken to restore the membrane permeability barrier of starved cells during resuscitation, as revealed by flow cytometric assessment of the uptake of the normally membrane-impermeant fluorescent DNA stain PO-PRO-3 {4-[3-methyl-2, 3-dihydro-(benzo-1, 3-oxazole)-2-methylidene]-1-(3′-trimethylammonium propyl)-pyridinium diiodide}. Although cell populations which contained fewer than nine ±five viable cells per flask failed to grow, 4 to 20% of the cells (of 1.2 X 106) were able to accumulate rhodamine 123 after 80 to 100 h of incubation, showing the ability of a significant number of the cells in the population at least to display “metabolic resuscitation.” Resuscitation and cell growth under such conditions were favored by the use of a 1:1 mixture of fresh lactate medium and supernatant from late-logarithmic-phase M. luteus cultures as the resuscitation medium. We conclude that the presence of a small fraction of viable cells at the onset of resuscitation facilitates the recovery of the majority of the remaining (dormant) cells. The cell density dependence of the kinetics, or population effect, suggests that this recovery is due to the excretion of some factor(s) which promoted the transition of cells from a state in which they are incapable of growth and division to one in which they are capable of colony formation.
机译:饥饿3至6个月的培养物中高比例的黄曲霉细胞丧失了在琼脂平板上生长并形成菌落的能力,但可以通过在适当的液体培养基中孵育而从休眠中恢复过来(AS Kaprelyants和DB Kell, Appl.Environ.Microbiol.59:3187-3196,1993)。在目前的工作中,通过流式细胞术和常规微生物学方法研究了此类培养物,发现它们包含各种数量的活细胞。用青霉素G预处理此类培养物,然后稀释,以改变该数目。当每个30 ml烧瓶的菌落形成细胞的初始数目约为9个(±5个)或更多时,可以观察到10%至40%的细胞复苏,从而观察到培养物的生长。当每个烧瓶中的活细胞数量从30个增加到105个时,显示大量荧光染料若丹明123(即具有可测量的膜通电能力的细胞)的细胞出现之前的滞后时间从70小时减少到27小时。 ,而可观察到的集落形成细胞数量增加之前的滞后时间几乎是恒定的(大约20小时)。如果每个烧瓶中有超过九个(±五个)初始存活细胞,则初始存活细胞的数量不影响培养物中可复苏细胞的最终百分比。流式细胞术评估正常膜不渗透性荧光DNA染色剂PO-PRO-3的摄取{4- [3-甲基-2,3-二氢-(苯并-1,3-恶唑)-2-亚甲基] -1-(3'-三甲基丙基丙基)-二碘化吡啶}。尽管每个烧瓶中少于9个±5个活细胞的细胞群无法生长,但在培养80至100小时后,有4至20%的细胞(1.2 X 106)能够积累若丹明123,显示出群体中相当多的细胞至少表现出“代谢性复苏”。在这种条件下的复苏和细胞生长,是通过使用新鲜乳酸培养基和对数晚期黄褐毛霉菌培养物的上清液的1:1混合物作为复苏培养基来进行的。我们得出结论,在复苏开始时一小部分活细胞的存在促进了大多数剩余(休眠)细胞的恢复。动力学或种群效应对细胞密度的依赖性表明,这种恢复是由于某些因素的排泄所致,这些因素促进了细胞从无法生长和分裂的状态转变为无法生长和分裂的状态。能够形成菌落。

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