Bacteriophage resistance evolution in a honey bee pathogen
Van Leuven, J.; Miller, C.; Peters, T.; Spencer, E.; Eline, Y.; Paull, K.; Saucedo, L.; Linzan, K.
Show abstract
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.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Bacteria-phage (co)evolution is constrained in a synthetic community across multiple bacteria-phage pairs 94%
- Extended genomic analyses of the broad-host-range phages vB_KmiM-2Di and vB_KmiM-4Dii reveal slopekviruses have highly conserved genomes 93%
- The Genetic Basis of phage susceptibility, cross-resistance and host-range in Salmonella 92%
Similar papers in this journal
- The Clostridioides difficile S-Layer Protein A (SlpA) serves as a general phage receptor 94%
- Csp1, A Cold-Shock Protein Homolog in Xylella fastidiosa Influences Pili Formation, Stress Response, and Gene Expression 94%
- Toxin/Antitoxin Systems Induce Persistence and Work in Concert with Restriction/Modification Systems to Inhibit Phage 94%
Similar papers in this journal
- Evolution in response to prophage activation attenuates the virulence of culturable Serratia symbiotica relatives of aphid endosymbionts 96%
- Step-specific adaptation and trade-off over the course of an infection by GASP-mutation small colony variants 94%
- Bacteriophage P22 SieA mediated superinfection exclusion 94%
Similar papers in this journal
- Experimental evolution of a pathogen confronted with innate immune memory increases variation in virulence 95%
- Manipulating multi-level selection in a fungal entomopathogen reveals social conflicts and a method for improving biocontrol traits 94%
- Acinetobacter phages use distinct strategies to breach the capsule barrier 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.