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March 31, 2026Animal Science Papers and Reports0 citationsOpen Access

Energy and nutrient utilisation of laying hens fed fibre rich diet containing graded levels of supplementary fungal xylanase

IWIsobel Margaret WhitingSRS.P. RoseAMA.M. Mackenzie

Key Points

  • The study aims to evaluate how different levels of xylanase influence energy and nutrient utilization in laying hens on a fibre-rich diet.
  • 72 Hy-Line Brown laying hens were divided into 24 cages with three hens each.
  • Diets included graded levels of xylanase (0, 1500, 2000, 2500 XU/kg) for nine days.
  • The study measured apparent metabolisable energy, nitrogen correction, and retention coefficients.
  • 2500 XU of xylanase significantly increased dietary apparent metabolisable energy and nitrogen retention coefficient.
  • Every additional 100 XU raised AME by 0.013 MJ and AMEn by 0.012 MJ.
  • No differences were found in growth or egg production among the different diets.

Abstract

Abstract The effect of graded levels of exogenous xylanase (XYL) at 0, 1500, 2000 or 2500 xylanase units (XU/kg) in laying hen diet containing 300 g/kg wheat distillers dried grains with solubles (DDGS) was examined. A total of 72, twenty-two-week-old, Hy-Line Brown laying hens were allocated to 24 cages, three birds in a cage. Each diet was fed for nine days to six cages following randomisation. Supplementing diets with 2500 XU, the highest XYL level, increased (p<0.05) dietary apparent metabolisable energy (AME) and nitrogen corrected AME (AMEn) in a linear pattern (L<0.05), and nitrogen retention coefficient (p<0.05) following quadratic response (Q<0.05). For every 100 XU, dietary AME and AMEn increased by 0.013 MJ and 0.012 MJ, respectively. There were no differences observed in bird growth or egg production variables. Further research is warranted to study the impact of greater XYL activities in laying hen diets formulated to contain greater DDGS inclusion rates.

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Cite This Study

Whiting et al. (2026) studied this question.

synapsesocial.com/papers/69cb6556e6a8c024954b96cbhttps://doi.org/10.2478/aspr-2026-0007
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Also Consider

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