Research Article

Dietary crude protein level and arginine analogue supplementation affect growth performance, nutrient digestibility, ileal morphology, and serum metabolites in broilers

Myunghwna Yu1, Hyunsoo Kim1, Chunik Lim1, Jun Seon Hong1, Hee-Jin Kim1, Yunseok Kim1, Sung-June Byun2, Eui-Chul Hong1,*
Author Information & Copyright ▼
1Poultry research Center, Department of Animal Resource Development, National Institute of Animal Science, Pyeongchang 25342, Korea.
2Animal Genetic Resources Research Center, National Institute of Animal Science, Hamyang 50000, Korea.
*Corresponding Author: Eui-Chul Hong, Poultry research Center, Department of Animal Resource Development, National Institute of Animal Science, Pyeongchang 25342, Korea, Republic of. E-mail: drhong@korea.kr.

© Copyright 2026 Korean Society of Animal Science and Technology. This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Received: May 14, 2026; Revised: Aug 12, 2026; Accepted: Aug 21, 2026

Published Online: Sep 29, 2026

Abstract

This study evaluated the effects of dietary crude protein (CP) level and arginine analogue supplementation on growth performance, nutrient utilization, intestinal morphology, and serum metabolites in broiler chickens during the finisher phase. A total of 256 male Ross 308 broilers were assigned to a 2 × 2 factorial design consisting of two dietary CP levels and two arginine analogue supplementation levels. From day 22 to day 35, birds were fed either a normal-CP diet containing 19% CP or a low-CP diet containing 17% CP, with or without arginine analogue supplementation. Each treatment included eight replicate cages with four birds per cage. Growth performance, apparent ileal digestibility (AID) of nutrients and amino acids, ileal morphology, and serum biochemical parameters were assessed on day 35. Broilers fed the normal-CP diet showed greater body weight on day 35, greater average daily gain, and a lower feed conversion ratio (FCR) during days 22–35 than those fed the low-CP diet (p < 0.05). Arginine analogue supplementation reduced FCR (p < 0.05) regardless of dietary CP level. Additionally, supplementation increased (p < 0.01) the AID of CP, arginine, and methionine, and improved ileal morphology (p < 0.05) by increasing villus height and crypt depth. Birds fed the low-CP diet exhibited higher (p < 0.05) AID values for several amino acids, including arginine, histidine, isoleucine, leucine, lysine, phenylalanine, valine, alanine, glycine, proline, and tyrosine. However, the low-CP diet also elevated (p < 0.05) serum alanine aminotransferase activity and decreased (p < 0.05) serum calcium concentration. Conversely, arginine analogue supplementation decreased (p < 0.05) serum triglyceride concentration. Overall, reducing dietary CP from 19% to 17% negatively affected growth performance, despite maintaining comparable levels of lysine, methionine plus cysteine, and threonine. However, arginine analogue supplementation improved feed efficiency, nutrient digestibility, and intestinal morphology. These findings suggest that arginine analogue supplementation may serve as an effective nutritional strategy to improve nutrient utilization and intestinal health in broilers fed reduced-CP diets, although additional amino acid optimization may be required to fully maintain growth performance.

Keywords: arginine analogue; broiler; feed efficiency; intestinal morphology; low crude protein diet; nutrient digestibility


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