Authors
Morteza Pashaei Jalal, Alireza Alizadeh Moghadam Mosouleh, Seyed Davood Sharifi, Abouzar Najafi
Published in
Veterinary medicine and science. Volume 12. Issue 5. Pages e71143.
Abstract
Valine (Val) is an essential branched-chain amino acid that plays a critical role in protein synthesis and reproductive function in poultry. However, the optimal dietary Val requirement for laying Japanese quail fed reduced-protein diets remains insufficiently defined.
This study evaluated the effects of graded dietary Val levels on reproductive performance, egg quality, hatchability, and hepatic and ovarian histomorphometry in laying Japanese quail under protein-restricted conditions.
A total of 375 Japanese quail (300 females and 75 males; 47-98 days of age) were randomly assigned to five dietary treatments containing 0.65%, 0.75%, 0.85%, 0.95%, or 1.05% Val, with five replicates per treatment. Productive performance was recorded weekly, egg quality traits were assessed periodically, and organs weights, ovarian follicular development, and hepatic histomorphology were evaluated at the end of the experiment.
Dietary Val significantly affected egg production, egg mass, and feed conversion ratio (p < 0.05). Quail fed 0.95% Val achieved the highest egg production and the most efficient feed conversion. Egg physical characteristics, including size and shape indices, were also improved at this supplementation level. Hatchability traits were not significantly influenced by dietary Val, although true hatchability was numerically greatest in the 0.95% Val group. Histological analyses demonstrated enhanced folliculogenesis and reduced hepatocyte and nuclear diameters in birds receiving 0.95% Val, indicating improved ovarian development without evidence of hepatic stress.
Approximately 0.95% dietary Val optimizes reproductive performance, egg quality, and ovarian development in laying Japanese quail fed reduced-protein diets. Increasing Val beyond this level provides no additional productive advantages and may impose greater hepatic metabolic demand.
PMID:
42554091
Bibliographic data and abstract were imported from PubMed on 05 Aug 2026.
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