Guanidinoacetic acid supplementation on growth performance and molecular mechanisms of lean mass gain in nursery pigs

Author:

Valini Graziela Alves da Cunha1ORCID,Duarte Marcio de Souza1ORCID,Rodrigues Gustavo de Amorim1ORCID,Veroneze Renata1ORCID,Saraiva Alysson1ORCID,Hausman Gary2ORCID,Rocha Gabriel Cipriano1ORCID

Affiliation:

1. Universidade Federal de Viçosa (UFV), Brazil

2. University of Georgia (UGA), USA

Abstract

ABSTRACT: The objective with the present study was to evaluate the effect of guanidinoacetic acid (GAA) on the growth performance of nursery piglets as well as a possible molecular mechanism of action on lean mass gain. Seventy-two pigs, weaned at 21 d, weighing 6.80 ± 1.2 kg were distributed in a completely randomized design into one of three dietary treatments (control, control + 1.2 g/kg GAA or control + 2.4 g/kg GAA) and 8 replicates per treatment. The control diet was an animal protein-free diet based on corn and soybean meal. Body weight, average daily weight gain, average daily feed intake and feed efficiency were evaluated at 35, 49, and 56 days. At the end of the experiment, one animal per pen was slaughtered and samples of the vastus lateralis muscle were collected for RT-qPCR and protein abundance analysis. Overall (from 21 to 56 d), GAA supplementation improved feed efficiency (P < 0.03). Skeletal muscle of pigs fed with GAA diet had greater mRNA expression of Akt (P < 0.04) and RPS6KB2 (P<0.01). In conclusion, supplementation with 2.4 g/kg GAA to nursery piglets improves feed efficiency and activates molecular mechanisms important to lean mass gain.

Publisher

FapUNIFESP (SciELO)

Subject

General Veterinary,Agronomy and Crop Science,Animal Science and Zoology

Reference16 articles.

1. Advances in protein-amino acid nutrition of poultry;BAKER D. H;Amino Acids,2009

2. Akt/mTOR pathway is a crucial regulator of skeletal muscle hypertrophy and can prevent muscle atrophy in vivo;BODINE S. C.;Nature Cell Biology,2001

3. Creatine supplementation and skeletal muscle metabolism for building muscle mass-review of the potential mechanisms of action.;FARNAZ F.;Current Protein & Peptide Science,2017

4. High-fat diet suppresses the positive effect of creatine supplementation on skeletal muscle function by reducing protein expression of IGF-PI3K-AKT-mTOR pathway.;FERRETTI R.;Plos One,2018

5. Keeping the home fires burning: AMP-activated protein kinase;HARDIE D. G.;J R Soc Interface,2018

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