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Enterocin M in Interaction in Broiler Rabbits with Autochthonous, Biofilm-Forming Enterococcus hirae Kr8 Strain
Andrea Lauková1, Ľubica Chrastinová2, Lenka Micenková3
1Centre of Biosciences of the Slovak Academy of Sciences, Institute of Animal Physiology, Šoltésovej 4-6, 040 01, Košice, Slovakia. laukova@saske.sk.
Abstract:
Young rabbits are susceptible to gastrointestinal diseases caused by bacteria. Enterococcus hirae can be associated with diseases. But enterocins produced by some enterococcal species can prevent/reduce this problem. Therefore, the interaction of enterocin M with a biofilm-forming, autochthonous E. hirae Kr8+ strain was tested in rabbits to assess enterocin potential in vivo. Rabbits (96), aged 35 days, both sexes, meat line M91 breed were divided into four groups, control C and three experimental groups. The rabbits in C received the standard diet, rabbits in experimental group 1 (E1) received 108 CFU/mL of Kr8+, a dose 500 µL/animal/day, E2 received Ent M (50 µL/animal/day), and E3 received both Kr8+ and Ent M in their drinking water over 21 days. The experiment lasted 42 days. Feces and blood were sampled at day 0/1 (at the start of the experiment, fecal mixture of 96 animals, n = 10), at day 21 (five fecal mixtures per group, n = 5), and at day 42 (21 days after additives cessation, the same). At days 21 and 42, four rabbits from each group were slaughtered, and cecum and appendix were sampled for standard microbial analysis. Ent M showed decreased tendency of Kr8+. Using next-generation sequencing, the phyla detected with the highest abundance were Firmicutes, Verrucomicrobia, Bacteroidetes, Tenericutes, Proteobacteria, Cyanobacteria, Saccharibacteria, and Actinobacteria. Interaction of Ent M with some phyla resulted in reduced abundance percentage. At day 21, significantly increased phagocytic activity (PA) was found in E1 and E2 (p < 0.001). Kr8+ did not attack PA and did not stimulate oxidative stress. But Ent M supported PA. The prospective importance of this study lies in beneficial interaction of enterocin in host body.
Insights
Enterocin M can reduce harmful bacteria like Enterococcus hirae in young rabbits. This study shows enterocin M supports immune activity, offering a potential probiotic approach for rabbit gut health.
Area of Science:
- Veterinary Microbiology
- Animal Science
- Bacteriology
Background:
- Young rabbits are vulnerable to gastrointestinal bacterial infections.
- Enterococcus hirae is a bacterium linked to rabbit diseases.
- Enterocins, produced by enterococci, show potential in combating these infections.
Purpose of the Study:
- To evaluate the in vivo efficacy of enterocin M against a biofilm-forming Enterococcus hirae Kr8+ strain in rabbits.
- To assess the impact of enterocin M on the rabbit gut microbiome and immune response.
Main Methods:
- A 42-day study involving 96 young rabbits divided into control and experimental groups.
- Experimental groups received Enterococcus hirae Kr8+, enterocin M, or both.
- Fecal, blood, and cecal/appendiceal samples were analyzed using microbial and next-generation sequencing techniques.
Main Results:
- Enterocin M demonstrated a tendency to reduce the presence of Enterococcus hirae Kr8+.
- Enterocin M modulated the gut microbiome composition, reducing the abundance of certain phyla.
- Phagocytic activity was significantly increased in rabbits treated with enterocin M, without inducing oxidative stress.
Conclusions:
- Enterocin M shows promise as a therapeutic agent against Enterococcus hirae in rabbits.
- Enterocin M positively influences the host's immune response and gut microbiota.
- This study highlights the beneficial interaction of enterocin M within the host, suggesting its potential as a probiotic.

