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Eline, Y.

Publications and source records attributed to Eline, Y..

2 recordsLinked to original sources

Hive-associated bacteria improve honeybee survival during Paenibacillus larvae infection

Honeybees (Apis mellifera L.) are the most common pollinators of crops. Honeybee larvae are susceptible to Paenibacillus larvae, a spore-forming Gram-positive bacterium that causes American Foulbrood (AFB), one of the most destructive brood diseases worldwide. Existing antibiotic treatments are undesirable due to increasing pathogen resistance and their residual accumulation in bee products. Consequently, there is increasing interest in biological agents and natural strategies for AFB control. However, most studies remain limited to in vitro or in vivo experiments and rarely evaluate impacts on adult bees. In this study, we systematically investigated hive-associated bacteria for their potential to enhance larval survival during P. larvae infection. Bacteria isolated from AFB-infected combs were sequenced and screened for antagonistic activity. Several Bacillus species--including B. zhangzhouensis, B. subtilis, B. amyloliquefaciens, B. licheniformis, and B. mojavensis--inhibited one or more P. larvae strains. Notably, the lysate of B. licheniformis suppressed all tested strains; Further characterization revealed that its main antibacterial component consists of heat-stable proteins between 30-50 kDa. Two Bacillus strains were selected for larval infection assays using laboratory-reared honeybee larvae: both significantly improved survival by 42% and 71%, respectively. To evaluate potential effects on adult bees, newly emerged workers were caged and fed B. licheniformis ASx lysate. Their survival differed from that of untreated controls but remained comparable to the Terra-Pro-fed bees, a Terramycin-based AFB treatment, and their gut microbiome remained similar to that of untreated controls. Overall, our findings suggest that hive-associated Bacillus species offer promising, low-impact candidates for AFB disease management.

microbiology↗

Bacteriophage resistance evolution in a honey bee pathogen

Honey bee (Apis mellifera) larvae are susceptible to the bacterial pathogen Paenibacillus larvae, which causes severe damage to bee colonies. Antibiotic treatment requires veterinary supervision in the United States, is not used in many parts of the world, perpetuates problems associated with antibiotic resistance, and can necessitate residual testing in bee products. There is interest in using bacteriophages to treat infected colonies (bacteriophage therapy) and several trials are promising. Nevertheless, the safety of using biological agents in the environment must be scrutinized. In this study we analyzed the ability of P. larvae to evolve resistance to several different bacteriophages. We found that bacteriophage resistance is rapidly developed in culture but often results in growth defects. Mutations in the bacteriophage-resistant isolates are concentrated in genes encoding potential surface receptors but are also observed in genes controlling general cellular functions, and in two cases--lysogeny. Testing one of these isolates in bee larvae, we found it to have reduced virulence compared to the parental P. larvae strain. We also found that bacteriophages are likely able to counteract resistance evolution. This work suggests that while bacteriophage-resistance may arise, its impact will likely be mitigated by reduced pathogenicity and secondary bacteriophage mutations that overcome resistance.

microbiology↗