ArticleAmino acids2022
Dietary L-arginine supplementation of tilapia (Oreochromis niloticus) alters the microbial population and activates intestinal fatty acid oxidation.
Article in Amino acids, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed, 18 citations in OpenAlex.
- New insights on the mechanism of L-arginine in alleviating hepatopancreatic lipid accumulation in grass carp (Animal nutrition (Zhongguo xu mu shou yi xue hui) · 2026Article
- Arginine Decarboxylase Gene (Microorganisms · 2026Article
- Amino Acid Requirements for Nile Tilapia: An Update.Animals : an open access journal from MDPI · 2023Review
- Immunonutrition: facilitating mucosal immune response in teleost intestine with amino acids through oxidant-antioxidant balance.Frontiers in immunology · 2023Review
- Dietary amino acids and intestinal microbiota.Amino acids · 2022Article
- The Role of Intestinal Microbial Metabolites in the Immunity of Equine Animals Infected With Horse Botflies.Frontiers in veterinary science · 2022Article
- Agmatine and glycolipid metabolism.Zhong nan da xue xue bao. Yi xue ban = Journal of Central South University. Medical sciences · 2021Article
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Authors and funding
3 authors at 2 institutions in 1 country.
Funding
Abstract
Currently, little is known about the function of L-arginine in the homeostasis of intestinal lipid metabolism. This study was conducted to test the hypothesis that dietary L-arginine supplementation may alter intestinal microbiota and lipid metabolism in tilapia. Tilapia were fed a basal diet (containing 16.9 g L-arginine per kilogram diets) or the basal diet supplemented with 1% or 2% L-arginine for 8 wks. In the present study, we found that dietary supplementation with 1% or 2% L-arginine induced a shift in the community structure of gut microbiota, as showed by increased (p < 0.05) α-diversity, altered (p < 0.05) β-diversity and function profile. This finding coincided with decreased lipid accretion in the intestine of tilapia, which was associated with an enhancement in mRNA levels for peroxisome proliferator-activated receptor α (Pparα), acyl-coenzyme a oxidase 1 (Acox1), and peroxisome proliferator-activated receptor γ coactivator-1α (Pgc-1α). Using intestinal epithelial cell culture, we demonstrated that the lipid-lowering effect of L-arginine was mainly mediated by activating the AMP-activated protein kinase (AMPK) signaling pathway, carnitine palmitoyltransferase 1 (CPT1), and PPARα, as well as mRNA levels for Acox1 and Acox2. Collectively, our results suggest that dietary L-arginine supplementation of tilapia changed the intestinal microbiota and activated intestinal fatty acid oxidation. However, future studies are warranted to determine the relationship between microbiota and lipid metabolism in the intestine.
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