Honeybee-Specific Lactic Acid Bacterium Supplements Have No Effect on American Foulbrood-Infected Honeybee Colonies
Jörg G Stephan1, Sepideh Lamei2,3, Jeffery S Pettis4
1Department of Ecology, Swedish University of Agricultural Sciences, Uppsala, Sweden jorg.stephan@slu.se.
Abstract:
Paenibacillus larvae, the causative agent of American foulbrood (AFB), is the primary bacterial pathogen affecting honeybees and beekeeping. The main methods for controlling AFB are incineration of diseased colonies or prophylactic antibiotic treatment (e.g., with tylosin), neither of which is fully satisfactory. The search for superior means for controlling AFB has led to an increased interest in the natural relationships between the honeybee-pathogenic and mutualistic microorganisms and, in particular, the antagonistic effects of honeybee-specific lactic acid bacteria (hbs-LAB) against P. larvae These effects have been demonstrated only on individual larvae in controlled laboratory bioassays. Here we investigated whether supplemental administration of hbs-LAB had a similar beneficial effect on P. larvae infection at colony level. We compared experimentally AFB-infected colonies treated with hbs-LAB supplements to untreated and tylosin-treated colonies and recorded AFB symptoms, bacterial spore levels, and two measures of colony health. To account for the complexity of a bee colony, we focused on (Bayesian) probabilities and magnitudes of effect sizes. Tylosin reduced AFB disease symptoms but also had a negative effect on colony strength. The tylosin treatment did not, however, affect P. larvae spore levels and might therefore "mask" the potential for disease. hbs-LAB tended to reduce brood size in the short term but was unlikely to affect AFB symptoms or spores. These results do not contradict demonstrated antagonistic effects of hbs-LAB against P. larvae at the individual bee level but rather suggest that supplementary administration of hbs-LAB may not be the most effective way to harness these beneficial effects at the colony level.IMPORTANCE The previously demonstrated antagonistic effects of honeybee-derived bacterial microbiota on the infectivity and pathogenicity of P. larvae in laboratory bioassays have identified a possible new approach to AFB control. However, honeybee colonies are complex superorganisms where social immune defenses play a major role in resistance against disease at the colony level. Few studies have investigated the effect of beneficial microorganisms on bee diseases at the colony level. Effects observed at the individual bee level do not necessarily translate into similar effects at the colony level. This study partially fills this gap by showing that, unlike at the individual level, hbs-LAB supplements did not affect AFB symptoms at the colony level. The inference is that the mechanisms regulating the honeybee microbial dynamics within a colony are too strong to manipulate positively through supplemental feeding of live hbs-LAB and that new potential remedies identified through laboratory research have to be tested thoroughly in situ, in colonies.
Insights
Honeybee-specific lactic acid bacteria (hbs-LAB) showed no significant effect on American foulbrood (AFB) symptoms at the colony level, despite prior lab success. Tylosin reduced symptoms but harmed colony health and didn't clear bacterial spores.
Area of Science:
- Apiculture and Bee Health
- Microbiology and Immunology
- Insect Pathology
Background:
- American foulbrood (AFB), caused by *Paenibacillus larvae*, is a major threat to honeybees and beekeeping.
- Current AFB control methods (incineration, antibiotics like tylosin) have limitations.
- Honeybee-specific lactic acid bacteria (hbs-LAB) show potential for AFB control based on laboratory studies.
Purpose of the Study:
- To evaluate the efficacy of supplemental hbs-LAB administration in controlling AFB at the honeybee colony level.
- To compare hbs-LAB treatment with untreated and tylosin-treated colonies.
- To assess AFB symptoms, bacterial spore loads, and overall colony health.
Main Methods:
- Experimentally AFB-infected honeybee colonies were treated with hbs-LAB supplements.
- Control groups included untreated colonies and colonies treated with tylosin.
- Data collected included AFB disease symptoms, *P. larvae* spore levels, and colony health metrics.
Main Results:
- Tylosin reduced AFB symptoms but negatively impacted colony strength and did not reduce *P. larvae* spore levels.
- hbs-LAB supplementation tended to temporarily reduce brood size.
- hbs-LAB treatment showed no significant effect on AFB symptoms or spore levels at the colony level.
Conclusions:
- Supplemental hbs-LAB administration may not be an effective strategy for controlling AFB at the colony level.
- The complex social immunity of honeybee colonies may override beneficial effects observed at the individual level.
- Further *in situ* research is needed to validate potential remedies identified in laboratory settings.
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