Fernando Moises Mamani Sanca, Carlos Emilio Cabrera Matajira, Sebastián Bermúdez-Puga, Taís Mayumi Kuniyoshi, Mauro de Medeiros Oliveira, Iago Rodrigues Blanco, Marcos Camargo Knirsch, José Manuel Domínguez, Andrea Micke Moreno, Alessandro de Mello Varani, Ricardo Pinheiro de Souza Oliveira
Swine production is vital for global food security; however, its sustainability is threatened by the overuse of antibiotics, which contributes to the emergence and dissemination of multidrug-resistant pathogens. Probiotics and bacteriocin-producing bacteria are promising strategies to support animal health and reduce antibiotic dependence. In this study, Enterococcus lactis LBM-M3D, isolated from the porcine gastrointestinal tract, was evaluated for in vitro antimicrobial activity, tolerance to simulated gastrointestinal conditions, genomic safety features, and bacteriocinogenic potential. The strain inhibited several Gram-positive swine-associated pathogens, including Streptococcus suis, Staphylococcus hyicus, Listeria monocytogenes, and Enterococcus faecalis. In addition, LBM-M3D remained viable under simulated gastrointestinal stress conditions, including exposure to pH 3.0 and 0.5% bile salts. Whole-genome sequencing identified four bacteriocin-like sequences, corresponding to enterolysin A, mundticin ATO6, enterocin SE-K4, and enterocin P. No acquired antimicrobial resistance genes were detected in plasmid-associated regions, whereas resistance- and virulence-associated determinants were exclusively chromosomally encoded. Although E. lactis is not currently included in the EFSA Qualified Presumption of Safety (QPS) list due to limited species-level safety data, our genomic analyses provide strain-level evidence supporting the safety of LBM-M3D. Overall, these findings indicate that LBM-M3D possesses probiotic-associated characteristics and represents a promising candidate for further probiotic development in swine production, pending additional functional validation, with potential applications in sustainable livestock systems.