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Published on: October 15, 2013
Burkholderia pseudomallei animal and human isolates from Malaysia exhibit different phenotypic characteristics
Song-Hua Lee1, Chan-Eng Chong, Boon-San Lim
1Faculty of Science and Technology, School of Biosciences and Biotechnology, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor Darul Ehsan, Malaysia.
Abstract:
Burkholderia pseudomallei is a Gram-negative saprophytic soil bacterium, which is the etiologic agent of melioidosis, a severe and fatal infectious disease occurring in human and animals. Distinct clinical and animal isolates have been shown to exhibit differences in phenotypic trait such as growth rate, colony morphology, antimicrobial resistance, and virulence. This study was carried out to gain insight into the intrinsic differences between 4 clinical and 6 animal B. pseudomallei isolates from Malaysia. The 16S rRNA-encoding genes from these 10 isolates of B. pseudomallei were sequenced to confirm the identity of these isolates along with the avirulent Burkholderia thailandensis. The nucleotide sequences indicated that the 16S rRNA-encoding genes among the 10 B. pseudomallei isolates were identical to each other. However, the nucleotide sequence differences in the 16S rRNA-encoding genes appeared to be B. pseudomallei and B. thailandensis specific. The growth rate of all B. pseudomallei isolates was determined by generating growth curves at 37 degrees C for 72 h. The isolates were found to differ in growth rates with doubling time varying from 1.5 to 2.3 h. In addition, the B. pseudomallei isolates exhibited considerable variation in colony morphology when grown on Ashdown media, brain-heart infusion agar, and Luria-Bertani agar over 9 days of observation. Antimicrobial susceptibility tests indicated that 80% of the isolates examined were Amp(R) Cb(R) Kn(R) Gm(R) Chl(S) Te(S). Virulence of the B. pseudomallei clinical and animal isolates was evaluated in B. pseudomallei-susceptible BALB/c mice. Most of the clinical isolates were highly virulent. However, virulence did not correlate with isolate origin since 2 of the animal isolates were also highly virulent.
Insights
This study investigated differences in Burkholderia pseudomallei clinical and animal isolates from Malaysia. While genetically similar, isolates varied in growth rate, colony morphology, antimicrobial resistance, and virulence, with some animal strains proving highly virulent.
Area of Science:
- Microbiology
- Infectious Diseases
- Bacteriology
Background:
- Burkholderia pseudomallei causes melioidosis, a severe disease in humans and animals.
- Isolates of B. pseudomallei exhibit variations in traits like growth, morphology, antimicrobial resistance, and virulence.
- Understanding these intrinsic differences is crucial for disease management.
Purpose of the Study:
- To investigate intrinsic differences between clinical and animal isolates of Burkholderia pseudomallei from Malaysia.
- To compare genetic identity, growth characteristics, colony morphology, antimicrobial susceptibility, and virulence.
Main Methods:
- Sequencing of 16S rRNA genes for isolate identification.
- Growth curve analysis at 37°C for 72 hours to determine doubling times.
- Colony morphology assessment on multiple agar media over 9 days.
- Antimicrobial susceptibility testing.
- Virulence evaluation in BALB/c mice.
Main Results:
- 16S rRNA gene sequences confirmed isolate identity and distinguished B. pseudomallei from B. thailandensis.
- Significant variations in growth rates (doubling time 1.5–2.3 h) and colony morphology were observed.
- Most isolates showed resistance to Ampicillin, Carbenicillin, Kanamycin, Gentamicin, and susceptibility to Chloramphenicol, Tetracycline.
- Clinical isolates were generally highly virulent, but two animal isolates also exhibited high virulence, indicating no strict correlation with origin.
Conclusions:
- Burkholderia pseudomallei isolates from Malaysia display significant phenotypic diversity despite genetic similarity in 16S rRNA genes.
- Virulence is not solely determined by isolate origin (clinical vs. animal).
- These findings highlight the complex nature of B. pseudomallei and the need for strain-specific considerations in melioidosis research and treatment.
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