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Evaluating the Effect of Environmental Chemicals on Honey Bee Development from the Individual to Colony Level
Published on: April 1, 2017
Feeding Honeybee Colonies with Honeybee-Specific Lactic Acid Bacteria (Hbs-LAB) Does Not Affect Colony-Level Hbs-LAB
Sepideh Lamei1,2, Jörg G Stephan3,4, Bo Nilson5,6
1Department of Ecology, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Abstract:
The main current methods for controlling American Foulbrood (AFB) in honeybees, caused by the bacterial pathogen Paenibacillus larvae, are enforced incineration or prophylactic antibiotic treatment, neither of which is fully satisfactory. This has led to an increased interest in the natural relationships between the pathogenic and mutualistic microorganisms of the honeybee microbiome, in particular, the antagonistic effects of Honeybee-Specific Lactic Acid Bacteria (hbs-LAB) against P. larvae. We investigated whether supplemental administration of these bacteria affected P. larvae infection at colony level over an entire flowering season. Over the season, the supplements affected neither colony-level hbs-LAB composition nor naturally subclinical or clinical P. larvae spore levels. The composition of hbs-LAB in colonies was, however, more diverse in apiaries with a history of clinical AFB, although this was also unrelated to P. larvae spore levels. During the experiments, we also showed that qPCR could detect a wider range of hbs-LAB, with higher specificity and sensitivity than mass spectrometry. Honeybee colonies are complex super-organisms where social immune defenses, natural homeostatic mechanisms, and microbiome diversity and function play a major role in disease resistance. This means that observations made at the individual bee level cannot be simply extrapolated to infer similar effects at colony level. Although individual laboratory larval assays have clearly demonstrated the antagonistic effects of hbs-LAB on P. larvae infection, the results from the experiments presented here indicate that direct conversion of such practice to colony-level administration of live hbs-LAB is not effective.
Insights
Supplemental administration of honeybee-specific lactic acid bacteria (hbs-LAB) did not control American Foulbrood (AFB) at the colony level. While hbs-LAB show promise in lab studies, their effectiveness in real-world honeybee colonies for AFB prevention remains unproven.
Area of Science:
- Microbiology
- Apiculture
- Immunology
Background:
- American Foulbrood (AFB), caused by Paenibacillus larvae, is a significant honeybee disease.
- Current control methods like incineration and antibiotics are unsatisfactory.
- Honeybee-specific lactic acid bacteria (hbs-LAB) show potential antagonism against P. larvae.
Purpose of the Study:
- To investigate the efficacy of supplemental hbs-LAB administration on P. larvae infection at the honeybee colony level.
- To assess the impact of hbs-LAB on colony microbiome composition and P. larvae spore levels throughout a flowering season.
Main Methods:
- Colony-level field experiments were conducted over an entire flowering season.
- Supplemental administration of hbs-LAB was provided to honeybee colonies.
- Honeybee-specific lactic acid bacteria composition and P. larvae spore levels were monitored.
- Quantitative PCR (qPCR) and mass spectrometry were used for hbs-LAB detection.
Main Results:
- Supplemental hbs-LAB administration did not alter colony-level hbs-LAB composition or P. larvae spore levels.
- Apiaries with a history of clinical AFB exhibited more diverse hbs-LAB composition, unrelated to spore levels.
- qPCR demonstrated higher specificity and sensitivity for hbs-LAB detection compared to mass spectrometry.
Conclusions:
- Directly translating in vitro hbs-LAB efficacy against P. larvae to colony-level application is not effective.
- Honeybee colony health relies on complex interactions including social immunity and microbiome diversity.
- Further research is needed to understand microbiome dynamics for effective disease resistance in honeybee colonies.
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