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Published on: March 14, 2014
Re-isolating Batrachochytrium dendrobatidis from an amphibian host increases pathogenicity in a subsequent exposure
Forrest M R Brem1, Matthew J Parris, Gretchen E Padgett-Flohr
1University of Memphis, Department of Biological Sciences, Memphis, Tennessee, United States of America. fbrem@memphis.edu
Abstract:
Controlled exposure experiments can be very informative, however, they are based on the assumption that pathogens maintained on artificial media under long-term storage retain the infective and pathogenic properties of the reproducing pathogen as it occurs in a host. We observed that JEL284, an in vitro cultured and maintained isolate of Batrachochytrium dendrobatidis (Bd), was becoming less infectious with successive uses. We hypothesized that passing an isolate propagated on artificial media through an amphibian host would make the isolate more infectious and pathogenic in subsequent exposures. To test our hypothesis, we used two discreet steps, a reisolation step (step 1) and a comparative exposure step (step 2). In step 1, we exposed eastern spadefoot toads, Scaphiopus holbrooki, to JEL284 and JEL197, another isolate that had been maintained in vitro for over six years. We then re-isolated JEL284 only from a successful infection and named this new isolate JEL284(FMBa). JEL197 did not infect any amphibians and, thus, did not proceed to step 2. In step 2, we compared infectivity and pathogenicity (mortality and survival time) of JEL284 and JEL284(FMBa) by exposing 54 naïve S. holbrooki to three treatments (JEL284, JEL284(FMBa), and negative control) with 18 individuals per group. We found that JEL284(FMBa) caused higher mortality and decreased survival time in infected individuals when compared to JEL284 and negative controls. Thus, our data show that pathogenicity of Bd can decrease when cultured successively in media only and can be partially restored by passage through an amphibian host. Therefore, we have demonstrated that pathogenicity shifts can occur rapidly in this pathogen. Given the potential for shifts in pathogenicity demonstrated here, we suspect Bd to have similar potential in natural populations. We suggest that, when possible, the use of freshly isolated or cryopreserved Bd would improve the quality of controlled exposure experiments using this pathogen.
Insights
Pathogenicity of the amphibian-killing fungus Batrachochytrium dendrobatidis (Bd) can decrease with lab culture. Passing Bd through a host amphibian can restore its infectiousness and pathogenicity for future experiments.
Area of Science:
- Amphibian pathology
- Fungal pathogen research
- Wildlife disease ecology
Background:
- Controlled exposure experiments are crucial for studying pathogens like Batrachochytrium dendrobatidis (Bd).
- Long-term in vitro culture of Bd may lead to reduced infectivity and pathogenicity.
- Maintaining pathogen virulence in laboratory settings is essential for reliable experimental outcomes.
Purpose of the Study:
- To investigate if passing Batrachochytrium dendrobatidis (Bd) through an amphibian host can restore its pathogenicity after in vitro culture.
- To compare the infectivity and pathogenicity of a lab-cultured Bd isolate with one passaged through a host.
Main Methods:
- Two isolates of Batrachochytrium dendrobatidis (Bd) were used, one with extensive in vitro culture (JEL284) and another (JEL197).
- Step 1 involved exposing eastern spadefoot toads (Scaphiopus holbrooki) to Bd isolates, followed by reisolation of JEL284 from a successful infection (JEL284(FMBa)).
- Step 2 compared the pathogenicity of JEL284 and JEL284(FMBa) by exposing naïve toads to each isolate and a negative control.
Main Results:
- The re-isolated JEL284(FMBa) caused significantly higher mortality and reduced survival times in infected toads compared to the original JEL284 isolate.
- JEL197 did not successfully infect the exposed amphibians.
- These findings indicate a decrease in Bd pathogenicity with successive media culturing and partial restoration through host passage.
Conclusions:
- Batrachochytrium dendrobatidis (Bd) pathogenicity can decrease during prolonged in vitro cultivation.
- Passaging Bd through an amphibian host can partially restore its virulence.
- Pathogenicity shifts in Bd can occur rapidly, suggesting potential for similar changes in natural populations.
- Using freshly isolated or cryopreserved Bd is recommended for controlled exposure experiments to ensure pathogen virulence.
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