| Literature DB >> 19330080 |
Matthew R Fogle1, David R Douglas1, Cynthia A Jumper2, David C Straus1.
Abstract
Chaetomium globosum is frequently isolated in water-damaged buildings and produces two mycotoxins called chaetoglobosins A and C when cultured on building material. In this study, the influence of ambient pH on the growth of C. globosum was examined on an artificial medium. This fungus was capable of growth on potato dextrose agar ranging in pH from 4.3 to 9.4 with optimal growth and chaetoglobosin C production occurring at a neutral pH. In addition, our results show that sporulation is favored in an acidic environment.Entities:
Keywords: Ambient pH; Chaetomium globosum; chaetoglobosin; indoor air quality; mycotoxin
Year: 2008 PMID: 19330080 PMCID: PMC2635641 DOI: 10.3390/ijms9122357
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 6.208
pH measurements of sterile potato dextrose agar.
| Medium | Predicted pH of Buffer | Actual pH | |
|---|---|---|---|
| Sterile Agar | |||
| Day 0 | Day 28 | ||
| Unbuffered PDA | n/a | 5.63 | 5.47 |
| Tris buffered PDA | 7.20 | 6.61 | 6.50 |
| 8.00 | 7.61 | 7.59 | |
| 9.00 | 8.24 | 8.19 | |
| Citrate-phosphate buffered PDA | 3.00 | 3.51 | 3.69 |
| 4.00 | 4.28 | 4.49 | |
| 5.00 | 5.17 | 5.40 | |
| 6.00 | 6.07 | 6.31 | |
| 7.00 | 7.01 | 7.23 | |
| Carbonate-bicarbonate buffered PDA | 9.20 | 9.07 | 9.13 |
| 10.00 | 9.25 | 9.26 | |
| 10.70 | 9.35 | 9.39 | |
| Tris-maleate buffered PDA | 5.20 | 5.21 | 5.02 |
| 6.00 | 5.84 | 5.75 | |
| 7.00 | 6.53 | 6.45 | |
| 8.00 | 7.37 | 7.30 | |
| 8.60 | 7.91 | 7.83 | |
a Average of three samples is shown.
Figure 1.Comparison of colony diameters of C. globosum on buffered and unbuffered potato dextrose agar. The actual pH of each medium on the day of inoculation is listed on the x-axis. Colony diameters were measured every week. The maximum diameter of each plate was 83 mm. Mean and standard error of the mean are shown (n = 15 plates).
Figure 2.Photographs of C. globosum colonies at 4 weeks on Tris buffered and unbuffered potato dextrose agar (a), on citrate-phosphate buffered potato dextrose agar (b) and on Tris-maleate buffered potato dextrose agar (c). The center of each agar plate was inoculated with 500 C. globosum spores suspended in 20 μL of water. These photographs depict the front and reverse sides of agar plates with C. globosum colonies after four weeks of incubation at room temperature.
Effect of pH on the sporulation.
| Medium | Predicted pH of buffer | Tape slide results | |||||
|---|---|---|---|---|---|---|---|
| Presence of perithecia | Presence of ascospores | ||||||
| Week 4 | Week 6 | Week 8 | Week 4 | Week 6 | Week 8 | ||
| Unbuffered PDA | n/a | + | + | + | + | + | + |
| Tris buffered PDA | 7.2 | + | + | + | + | + | + |
| 8.0 | + | + | + | + | + | + | |
| 9.0 | + | + | + | − | − | − | |
| Citrate-phosphate buffered PDA | 3.0 | − | NT | NT | − | NT | NT |
| 4.0 | − | + | + | − | − | + | |
| 5.0 | − | + | + | − | − | + | |
| 6.0 | − | − | + | − | − | − | |
| 7.0 | − | + | + | − | − | + | |
| Carbonate-bicarbonate buffered PDA | 9.2 | − | − | − | − | − | − |
| 10.0 | − | − | − | − | − | − | |
| 10.7 | − | − | − | − | − | − | |
| Tris-maleate buffered PDA | 5.2 | − | − | − | + | + | + |
| 6.0 | + | + | + | + | + | + | |
| 7.0 | + | + | + | + | + | + | |
| 8.0 | + | + | + | − | + | + | |
| 8.6 | + | + | + | + | + | + | |
a Tape slides were taken from a single agar plate at four, six or eight weeks post-inoculation. Presence or absence of perithecia and ascospores is indicated with a “+” or “−” respectively. Samples not taken are indicated by “NT”.
Figure 3.HPLC chromatogram with UV spectra of selected peak inserted. The chromatogram shows the signal obtained from the methanol extract of C. globosum grown on five citrate phosphate buffered potato dextrose agar plates at a pH of 7.01 for four weeks. The retention times (min) are plotted on the x-axis and the peak sizes (in milli-absorbance units) on the y-axis. For UV spectrum (inset), wavelengths (in nanometers) are plotted on the x-axis and peak sizes (in milli-absorbance units) on the y-axis.