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Additional isoleucine without valine in an imbalanced branched-chain amino acid diet further exacerbates its negative effects in broilers

  • Doyun Goo
  • , Janghan Choi
  • , Jihwan Lee
  • , Milan K. Sharma
  • , Deependra Paneru
  • , Hamid R. Rafieian-Naeini
  • , Hong Zhuang
  • , Byungwhi Kong
  • , Brian Bowker
  • , Casey W. Ritz
  • , Woo K. Kim*
  • *Corresponding author for this work
  • University of Georgia
  • Texas Tech University
  • United States Department of Agriculture

Research output: Contribution to journalJournal articlepeer-review

Abstract

High leucine levels and an imbalanced branched-chain amino acid (BCAA) ratio in the diet can trigger BCAA antagonism, negatively affecting chicken growth. The current study investigated how additional valine and isoleucine could mitigate the negative effects of imbalanced BCAA diets in broilers. The control and additional isoleucine groups experienced significantly decreased body weight gain (BWG) and feed efficiency compared to the additional valine and valine with isoleucine groups ( P < 0.001). The additional isoleucine group significantly reduced BWG and feed intake (FI) compared to the control group ( P < 0.001). The additional isoleucine group had the lowest carcass weight, breast muscle weight, lean and fat weights, bone mineral density and content, tight junction-related gene expression levels, and villus height values among the groups ( P < 0.05). The additional isoleucine group had the highest levels of breast muscle BCAA catabolism-related enzyme and gene expression among the groups ( P < 0.05). However, the gene expression levels in breast muscle decreased when valine and isoleucine were provided together. In conclusion, adding isoleucine alone to a BCAA-imbalanced diet can further exacerbate the negative effects of BCAA antagonism and deficiency, impairing growth performance unless additional valine is also provided.

Original languageEnglish
Article number100631
JournalJournal of Applied Poultry Research
Volume34
Issue number4
DOIs
StatePublished - 2025.12

Keywords

  • Branched-chain alpha-keto acid dehydrogenase
  • Branched-chain amino acids
  • Breast muscle
  • Broiler
  • Intestinal health

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