Investigating the physiology of viable but non-culturable bacteria by microfluidics and time-lapse microscopy

被引:106
作者
Bamford, Rosemary A. [1 ,2 ]
Smith, Ashley [1 ,2 ]
Metz, Jeremy [1 ,2 ]
Glover, Georgina [1 ,2 ]
Titball, Richard W. [1 ]
Pagliara, Stefano [1 ,2 ]
机构
[1] Univ Exeter, Biosci, Exeter EX4 4QD, Devon, England
[2] Univ Exeter, Living Syst Inst, Exeter EX4 4QD, Devon, England
来源
BMC BIOLOGY | 2017年 / 15卷
基金
英国生物技术与生命科学研究理事会; 英国惠康基金;
关键词
Viable but non-culturable cells; Microfluidics; Escherichia coli; Persisters; Single-cell; Antibiotic tolerance; Non-growing cells; ESCHERICHIA-COLI; PERSISTER CELLS; STOCHASTIC INDUCTION; VIBRIO-VULNIFICUS; SURVIVAL; TOLERANCE; STATE; DYNAMICS; CHOLERAE; REVEALS;
D O I
10.1186/s12915-017-0465-4
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Clonal microbial populations often harbor rare phenotypic variants that are typically hidden within the majority of the remaining cells, but are crucial for the population's resilience to external perturbations. Persister and viable but non-culturable (VBNC) cells are two important clonal bacterial subpopulations that can survive antibiotic treatment. Both persister and VBNC cells pose a serious threat to human health. However, unlike persister cells, which quickly resume growth following drug removal, VBNC cells can remain non-growing for prolonged periods of time, thus eluding detection via traditional microbiological assays. Therefore, understanding the molecular mechanisms underlying the formation of VBNC cells requires the characterization of the clonal population with single-cell resolution. A combination of microfluidics, time-lapse microscopy, and fluorescent reporter strains offers the perfect platform for investigating individual cells while manipulating their environment. Methods: Here, we report a novel single-cell approach to investigate VBNC cells. We perform drug treatment, bacterial culturing, and live/dead staining in series by using transcriptional reporter strains and novel adaptations to the mother machine technology. Since we track each cell throughout the experiment, we are able to quantify the size, morphology and fluorescence that each VBNC cell displayed before, during and after drug treatment. Results: We show that VBNC cells are not dead or dying cells but share similar phenotypic features with persister cells, suggesting a link between these two subpopulations, at least in the Escherichia coli strain under investigation. We strengthen this link by demonstrating that, before drug treatment, both persister and VBNC cells can be distinguished from the remainder of the population by their lower fluorescence when using a reporter strain for tnaC, encoding the leader peptide of the tnaCAB operon responsible for tryptophan metabolism. Conclusion: Our data demonstrates the suitability of our approach for studying the physiology of non-growing cells in response to external perturbations. Our approach will allow the identification of novel biomarkers for the isolation of VBNC and persister cells and will open new opportunities to map the detailed biochemical makeup of these clonal subpopulations.
引用
收藏
页数:12
相关论文
共 56 条
  • [1] Survival of Helicobacter pylori in a natural freshwater environment
    Adams, BL
    Bates, TC
    Oliver, JD
    [J]. APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2003, 69 (12) : 7462 - 7466
  • [2] Metabolic Control of Persister Formation in Escherichia coli
    Amato, Stephanie M.
    Orman, Mehmet A.
    Brynildsen, Mark P.
    [J]. MOLECULAR CELL, 2013, 50 (04) : 475 - 487
  • [3] Gene expression profile of Vibrio cholerae in the cold stress-induced viable but non-culturable state
    Asakura, Hiroshi
    Ishiwa, Akiko
    Arakawa, Eiji
    Makino, Sou-ichi
    Okada, Yumiko
    Yamamoto, Shigeki
    Igimi, Shizunobu
    [J]. ENVIRONMENTAL MICROBIOLOGY, 2007, 9 (04) : 869 - 879
  • [4] Bridging the gap between viable but non-culturable and antibiotic persistent bacteria
    Ayrapetyan, Mesrop
    Williams, Tiffany C.
    Oliver, James D.
    [J]. TRENDS IN MICROBIOLOGY, 2015, 23 (01) : 7 - 13
  • [5] Bacterial persistence as a phenotypic switch
    Balaban, NQ
    Merrin, J
    Chait, R
    Kowalik, L
    Leibler, S
    [J]. SCIENCE, 2004, 305 (5690) : 1622 - 1625
  • [6] Bamford R, LENGTH PERSISTER VIA
  • [7] Bamford R, FRACTION PERSISTER V
  • [8] Bamford R, DISTRIBUTIONS TIMES
  • [9] Bamford R, PATTERNS GFP FLUORES
  • [10] Biased partitioning of the multidrug efflux pump AcrAB-TolC underlies long-lived phenotypic heterogeneity
    Bergmiller, Tobias
    Andersson, Anna M. C.
    Tomasek, Kathrin
    Balleza, Enrique
    Kiviet, Daniel J.
    Hauschild, Robert
    Tkacik, Gasper
    Guet, Calin C.
    [J]. SCIENCE, 2017, 356 (6335) : 309 - 311