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September 12, 2025Nutrition Research Reviews5 citationsOpen Access

Relevance of nonessential amino acids in low crude protein diets for broiler chickens – an updated review

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WSW. SiegertAOAdewunmi O. OmotosoPHP. Hofmann

Key Points

  • Reducing dietary crude protein to ∼16% can maintain growth and efficiency in broiler chickens with appropriate amino acid balance.
  • Glycine and serine, as evaluated through glycine equivalents, limit growth when dietary protein drops below 19% in young birds.
  • Asparagine or glutamine may become limiting factors for growth when crude protein is under 16%, influencing amino acid requirements.
  • Utilizing free amino acids can enhance nitrogen utilization efficiency to over 80%, reducing nitrogen emissions and energy costs.

Abstract

Reducing crude protein in amino acid-adequate diets for broiler chickens is effective in reducing nitrogenous emissions and competition for resources between the food and feed sectors. This review provides a comprehensive analysis of the literature on the relevance of nonessential amino acids in low-protein diets for broiler chickens. Glycine and serine, due to their interconvertibility summarized as glycine equivalents (Gly equi ), limit growth when dietary crude protein is reduced below 19% in up to 3-week-old birds. Considering essential amino acids and the variable Glyequi requirements enables the reduction of dietary crude protein to ∼16% without compromising growth. Variation in Glyequi requirements likely occurs predominantly from varying amounts of uric acid formed. Other influences seem to exert lower impacts on dietary Glyequi requirements. Asparagine or glutamine is probably the growth-limiting amino acid when crude protein is reduced below 16%. Alternatively, non-specific amino-nitrogen may be lacking in such diets. The current potential to reduce dietary crude protein when using free essential and nonessential amino acids enables to increase the efficiency of nitrogen utilization to a value above 80%. This coincides with reduced uric acid synthesis and energy expenditure for nitrogen excretion. The lower nitrogen excretion via the urine results in a lower energy expenditure. Hence, dietary energy may prospectively be reduced once the energy-sparing effect is quantified, thereby further reducing the competition for resources between food and feed.

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Cite This Study

Siegert et al. (2025) studied this question.

synapsesocial.com/papers/68d44b3831b076d99fa54b66https://doi.org/10.1017/s0954422425100176
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