| Literature DB >> 22029875 |
Qun Ma1, Guishan Zhang, Thomas K Wood.
Abstract
BACKGROUND: Previously we showed that BdcA controls Escherichia coli biofilm dispersal by binding the ubiquitous bacterial signal cyclic diguanylate (c-di-GMP); upon reducing the concentration of c-di-GMP, the cell shifts to the planktonic state by increasing motility, decreasing aggregation, and decreasing production of biofilm adhesins.Entities:
Year: 2011 PMID: 22029875 PMCID: PMC3214192 DOI: 10.1186/1756-0500-4-447
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Strains and plasmids used in this study
| Strain/Plasmid | Genotype | Source |
|---|---|---|
| [ | ||
| [ | ||
| This study | ||
| This study | ||
| [ | ||
| R. Frazee | ||
| M. Sadowski | ||
| PA14/pMMB206 | This study | |
| PA14/pMMB206-BdcA | This study | |
| PA14 | This study | |
| PA14 | This study | |
| This study | ||
| This study | ||
| This study | ||
| This study | ||
| This study | ||
| This study | ||
| pMMB206 | Cmr, Mob+, | [ |
| pMMB206-BdcA | Cmr; pMMB206 with | this work |
| pRK2013 | Kmr; Tra+ Mob+ (RK2) Km::Tn7 ColEl origin, helper plasmid for mobilization | M. Bagdasarian, [ |
| pP25-gfp | Carr; constitutive green fluorescent protein production | [ |
Cmr, Carr, and Kmr, denote chloramphenicol, carbenicillin, and kanamycin resistance, respectively.
Figure 1Plasmid map for pMMB206-BdcA. The bdcA gene is shown in yellow.
Figure 2BdcA increases swarming and swimming motility. (A) Swarming motility of P. aeruginosa PA14 and R. meliloti 102F34 with BdcA production. The P. aeruginosa BM-2 plates were incubated at 37°C with 250 μg/mL chloramphenicol for 15 h, and the R. meliloti Eiken agar plates were incubated at 30°C with 50 μg/mL chloramphenicol for 15 h. (B) Swimming motility of P. aeruginosa, P. fluorescens, and R. meliloti 102F34. The P. aeruginosa plates were incubated at 37°C with 250 μg/mL chloramphenicol for 11 h, the P. fluorescens plates were incubated at 30°C with 250 μg/mL chloramphenicol for 20 h, and the R. meliloti plates were incubated at 30°C with 50 μg/mL chloramphenicol for 15 h. Black bars show the motility for strains expressing bdcA via pMMB206-BdcA and the gray bars indicate the control strains with pMMB206. For each strain, 0.1 mM IPTG was added to induce bdcA expression. ** indicates statistical significant difference as determined by a Student's t-test (p < 0.05). Error bars indicate the standard deviation of two independent cultures.
Figure 3BdcA disperses biofilms in static biofilm tests with 96-well plates. (A) Strains as in the Figure 2 caption. Black bars indicate mature biofilm formation (2 h after IPTG induction for each strain), and the gray bars show biofilm formation after dispersal (19 h after IPTG induction for P. aeruginosa/pMMB206-BdcA and 21.5 h after IPTG induction for P. fluorescens/pMMB206-BdcA and R. meliloti/pMMB206-BdcA). For all three strains, 0.1 mM IPTG was added after 24 h incubation to induce bdcA expression. The P. aeruginosa biofilm was formed at 37°C in LB with 250 μg/mL chloramphenicol, the P. fluorescens biofilm was formed at 30°C in LB with 250 μg/mL chloramphenicol, and the R. meliloti biofilm was formed at 30°C in LB with 50 μg/mL chloramphenicol. pMMB206 indicates cells with this plasmid, and BdcA indicates cells containing pMMB206-BdcA. (B) For the dual-species biofilms, R. meliloti (30°C) and P. aeruginosa (37°C) biofilms were formed in LB for 24 h then E. coli DH5α/pMMB206-BdcA/pRK2013 was added. The mixed biofilm was developed for 4 h, then IPTG was added for 26 h to produce BdcA. For the triple species biofilm, the R. meliloti and P. aeruginosa biofilm was formed in LB for 24 h at 30°C, then E. coli DH5α/pMMB206-BdcA/pRK2013 was added. The mixed biofilm was developed for 11 h, then IPTG was added for another 24 h to produce BdcA. Normalized biofilm is indicated by dividing biofilm formation by cell turbidity. pMMB206 (black bars) indicates cells with this plasmid, and BdcA (gray bars) indicates cells containing pMMB206-BdcA. ** indicates statistical significant difference as determined by a Student's t-test (p < 0.05). Error bars indicate the standard deviation of two independent cultures.
Flow cell statistical analysis of biofilm formation via COMSTAT
| Time | Biomass | Surface coverage | Average thickness | Roughness | Biomass | Surface coverage | Average thickness | Roughness |
|---|---|---|---|---|---|---|---|---|
| 72 h | 3 ± 1 | 36 ± 7 | 6 ± 3 | 0.5 ± 0.3 | 4 ± 1 | 37 ± 9 | 8 ± 3 | 0.5 ± 0.2 |
| 120 h | 3.1 ± 0.9 | 37 ± 8 | 7 ± 3 | 0.5 ± 0.2 | 0.2 ± 0.1 | 13 ± 4 | 0.5 ± 0.4 | 1.6 ± 0.2 |
| 67 h | 3 ± 1 | 34 ± 8 | 6 ± 2 | 0.6 ± 0.3 | 3 ± 1 | 40 ± 10 | 6 ± 2 | 0.7 ± 0.2 |
| 115 h | 2.8 ± 0.7 | 30 ± 6 | 6 ± 2 | 0.5 ± 0.1 | 0.4 ± 0.3 | 17 ± 5 | 0.9 ± 0.7 | 1.3 ± 0.3 |
For P. aeruginosa, cultures were grown in LB with 250 μg/mL chloramphenicol and 50 μg/mL carbenicillin for 24 h, then bdcA expression was induced by adding 0.1 mM IPTG. Data were collected at 72 h (48 h after IPTG addition) and 120 h (96 h after IPTG addition). For R. meliloti, cultures were grown in LB with 50 μg/mL chloramphenicol and 50 μg/mL carbenicillin for 24 h, then bdcA expression was induced by adding 0.1 mM IPTG. Data were collected at 67 h (43 h after IPTG addition) and 115 h (91 h after IPTG addition). Data are the average of two independent cultures for each strain.
Figure 4BdcA disperses . Representative IMARIS images of P. aeruginosa/pMMB206-BdcA/pP25-gfp and P. aeruginosa/pMMB206/pP25-gfp flow cell biofilm formation after 72 h and 120 h of incubation with LB medium at 37°C (A). IMARIS images of R. meliloti/pMMB206-BdcA/pP25-gfp and R. meliloti/pMMB206/pP25-gfp flow cell biofilm formation after 67 h and 115 h of incubation with LB medium at 30°C (B). After forming biofilms in LB for 24 h, IPTG (0.1 mM) was added to induce BdcA production from pMMB206-BdcA. Each strain has pP25-gfp for producing GFP to visualize the biofilms, and carbenicillin (50 μg/mL) was added to retain pP25-gfp. Chloramphenicol (250 μg/mL for P. aeruginosa and 50 μg/mL for R. meliloti) was used to retain the pMMB206-based plasmids. Scale bars represent 10 μm.