ArticleJournal of animal science and biotechnology2023
Antimicrobial peptides act on the rumen microbiome and metabolome affecting the performance of castrated bulls.
Article in Journal of animal science and biotechnology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 32 papers, 1 of them a synthesis that pooled it.
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Who cites it
32 citing papers in PubMed, 1 synthesis or guideline pooled it, 35 citations in OpenAlex.
- Meta-analyses of the global impact of non-antibiotic feed additives on livestock performance and health.Journal of advanced research · 2026Pooled it
- Yeast Culture Alleviates High-Concentrate Diet-Induced Rumen Fermentation Disturbances and Modulates the Rumen Microbiota and Metabolome in Lambs.Microorganisms · 2026Article
- Antimicrobial peptides as sustainable alternatives to antibiotics in livestock production: implications for animal health in tropical and sub-tropical systems.Tropical animal health and production · 2026Review
- Effects of a Combined Antimicrobial Peptide andMicroorganisms · 2026Article
- Antimicrobial Peptides Improved Growth Performance by Intervening Ileac Microorganisms and Metabolites in Holstein Steers.Probiotics and antimicrobial proteins · 2026Article
- Enhancing Bullfrog Meat Texture and Health Value through Probiotic Intervention.Probiotics and antimicrobial proteins · 2026Article
- Dietary N-acetylcysteine enhances sperm motility by remodeling the rumen microbiome and its metabolic axis in goats.Journal of animal science and biotechnology · 2026Article
- Effects of Composite Antimicrobial Peptides on Colonic Microbiota and Barrier Integrity in Holstein Steers.Probiotics and antimicrobial proteins · 2026Article
- Investigating the potential role of propionylcarnitine in milk pentadecanoic acid synthesis in Chinese holstein dairy cows using multi-omics analysis.BMC genomics · 2026Article
- A Novel Approach to Biodegradation and Detoxification of Ricinine in Castor Meal: Relationship Between the Gut Microbiota and Microbial Metabolites ofMicroorganisms · 2026Article
- Harnessing apidaecin capability to improve intestinal health and inhibit Salmonella Typhimurium transmission in laying hens.Journal of animal science · 2026Article
- Cecropin AD improves growth performance in impaired lambs by modulating gastrointestinal morphology, barrier function, and microbial composition.BMC veterinary research · 2026Article
- Integrated meta-omics reveals AFBMicrobiome · 2025Article
- Alteration of Cecal Microbiota by Antimicrobial Peptides Enhances the Rational and Efficient Utilization of Nutrients in Holstein Bulls.Probiotics and antimicrobial proteins · 2025Article
- Cecropin supplementation improves growth performance by regulating immune function, rumen fermentation and microbiota in goats.Animal bioscience · 2025Article
- Antimicrobial Peptides Versus Antibiotics in Farm Animal Production.Antibiotics (Basel, Switzerland) · 2025Review
- Development and characterisation of brown seaweed hydrolysates and fermentates with potential to reduce enteric methane.Scientific reports · 2025Article
- Article
- Enhancing Holstein steers growth performance: oregano essential oil's impact on rumen development, functionality and microorganism.Animal microbiome · 2025Article
- Effects of Compound Microecological Preparation Supplementation on Production Performance and Nutrient Apparent Digestibility in Hu Sheep from the Rumen Perspective.Microorganisms · 2025Article
Corrections and comments
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Authors and funding
13 authors at 3 institutions in 1 country.
Funding
Abstract
backgroundMany countries have already banned the use of antibiotics in animal husbandry, making it extremely difficult to maintain animal health in livestock breeding. In the livestock industry, there is an urgent need to develop alternatives to antibiotics which will not lead to drug resistance on prolonged use. In this study, eighteen castrated bulls were randomly divided into two groups. The control group (CK) was fed the basal diet, while the antimicrobial peptide group (AP) was fed the basal diet supplemented with 8 g of antimicrobial peptides in the basal diet for the experimental period of 270 d. They were then slaughtered to measure production performance, and the ruminal contents were isolated for metagenomic and metabolome sequencing analysis.
resultThe results showed that antimicrobial peptides could improve the daily weight, carcass weight, and net meat weight of the experimental animals. Additionally, the rumen papillae diameter and the micropapillary density in the AP were significantly greater than those in the CK. Furthermore, the determination of digestive enzymes and fermentation parameters showed that the contents of protease, xylanase, and β-glucoside in the AP were greater than those in the CK. However, lipase content in the CK was greater than that in the AP. Moreover, the content of acetate, propionate, butyrate, and valerate was found to be greater in AP than those in CK. The metagenomic analysis annotated 1993 differential microorganisms at the species level. The KEGG enrichment of these microorganisms revealed that the enrichment of drug resistance-related pathways was dramatically decreased in the AP, whereas the enrichment of immune-related pathways was significantly increased. There was also a significant reduction in the types of viruses in the AP. 187 probiotics with significant differences were found, 135 of which were higher in AP than in CK. It was also found that the antimicrobial mechanism of the antimicrobial peptides was quite specific. Seven low-abundance microorganisms (Acinetobacter_sp._Ac_1271, Aequorivita soesokkakensis, Bacillus lacisalsi, Haloferax larsenii, Lysinibacillus_sp._3DF0063, Parabacteroides_sp._2_1_7, Streptomyces_sp._So13.3) were found to regulate growth performance of the bull negatively. Metabolome analysis identified 45 differentially differential metabolites that significantly different between the CK and the AP groups. Seven upregulated metabolites (4-pyridoxic acid, Ala-Phe, 3-ureidopropionate, hippuric acid, terephthalic acid, L-alanine, uridine 5-monophosphate) improve the growth performance of the experimental animals. To detect the interactions between the rumen microbiome and metabolism, we associated the rumen microbiome with the metabolome and found that negative regulation between the above 7 microorganisms and 7 metabolites.
conclusionsThis study shows that antimicrobial peptides can improve the growth performance of animals while resisting viruses and harmful bacteria and are expected to become healthy alternatives to antibiotics. We demonstrated a new antimicrobial peptides pharmacological model. We demonstrated low-abundance microorganisms may play a role by regulating the content of metabolites.
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