Login / Signup

Metabolomic networks and pathways associated with feed efficiency and related-traits in Duroc and Landrace pigs.

Victor Adriano Okstoft CarmeloPriyanka BanerjeeWellison Jarles Da Silva DinizHaja N Kadarmideen
Published in: Scientific reports (2020)
Improving feed efficiency (FE) is a major goal of pig breeding, reducing production costs and providing sustainability to the pig industry. Reliable predictors for FE could assist pig producers. We carried out untargeted blood metabolite profiling in uncastrated males from Danbred Duroc (n = 59) and Danbred Landrace (n = 50) pigs at the beginning and end of a FE testing phase to identify biomarkers and biological processes underlying FE and related traits. By applying linear modeling and clustering analyses coupled with WGCNA framework, we identified 102 and 73 relevant metabolites in Duroc and Landrace based on two sampling time points. Among them, choline and pyridoxamine were hub metabolites in Duroc in early testing phase, while, acetoacetate, cholesterol sulfate, xanthine, and deoxyuridine were identified in the end of testing. In Landrace, cholesterol sulfate, thiamine, L-methionine, chenodeoxycholate were identified at early testing phase, while, D-glutamate, pyridoxamine, deoxycytidine, and L-2-aminoadipate were found at the end of testing. Validation of these results in larger populations could establish FE prediction using metabolomics biomarkers. We conclude that it is possible to identify a link between blood metabolite profiles and FE. These results could lead to improved nutrient utilization, reduced production costs, and increased FE.
Keyphrases
  • metal organic framework
  • aqueous solution
  • ms ms
  • mass spectrometry
  • genome wide
  • gene expression
  • visible light
  • single cell
  • metabolic syndrome
  • rna seq
  • low density lipoprotein
  • high resolution mass spectrometry