Influence of dietary combinations of Amphora coffeaeformis with linseed oil or sunflower oil on performance, fatty and amino acid profiles, oxidative stability and meat quality of broiler chickens
ITALIAN JOURNAL OF ANIMAL SCIENCE • 2021
Publication Information
Authors
Sabry M. El-Bahr, Saad Al-Sultan, Mohammed A. Alfattah, Ahmed Shehab,
Islam Sabeq, Saad Shousha, Omar Ahmed-Farid, Osama El-Garhy, Khalid A.
Albusadah, Sameer Alhojaily & Wasseem Khattab
Keywords
Chickens; microalgae; meat
quality; antioxidants;
biomarkers
Journal
ITALIAN JOURNAL OF ANIMAL SCIENCE
Publisher
Taylor and Francis
Volume
20,
Issue
Not Available
Pages
1587–1600
publication.type
International
Paper Link
Open Link
Supplementary Materials
Not Available
Abstract
This study aimed to evaluate the effect of dietary linseed oil, sunflower oil, and their supplementation
with Amphora coffeaeformis (AC) on growth performance, carcase characteristics, fatty and
amino acid profiles, oxidative stability, and meat quality of broiler chickens. One hundred and
eighty day-old broiler chicks were divided into four groups (five replicates per group, 9 birds
per each replicate pen). Birds in groups 1, 2, 3, and 4 fed diets containing 3% sunflower oil without
AC (SFO 3%), 3% SFO with 1 g/kg diet of AC (SFAC), 3% linseed oil without AC (LSO 3%)
and 3% LSO oil with 1 g/kg diet of AC (LSAC), respectively for 32 days. Final weight and weight
gain were increased whereas fat pads were decreased in birds fed diets containing SFAC or
LSAC compared to other groups. The values of omega-3 fatty acids, essential amino acids, and
antioxidants were increased while saturated fatty acids (SFA) declined in the meat of birds fed
diets supplemented with AC (SFAC & LSAC) compared to other groups. Lysine levels in the
meat of birds fed AC and/or linseed diets were inversely related to hepatic L-carnitine levels.
Breast meats of different broiler groups did not differ significantly in quality traits. However,
broilers fed AC-containing diets had relatively lower yellowness, redness, and Chroma values.
Conclusively, dietary combinations of AC with either SFO or LSO improved the performance,
fatty and amino acid profiles, oxidative stability, and meat quality of broiler chickens.
with Amphora coffeaeformis (AC) on growth performance, carcase characteristics, fatty and
amino acid profiles, oxidative stability, and meat quality of broiler chickens. One hundred and
eighty day-old broiler chicks were divided into four groups (five replicates per group, 9 birds
per each replicate pen). Birds in groups 1, 2, 3, and 4 fed diets containing 3% sunflower oil without
AC (SFO 3%), 3% SFO with 1 g/kg diet of AC (SFAC), 3% linseed oil without AC (LSO 3%)
and 3% LSO oil with 1 g/kg diet of AC (LSAC), respectively for 32 days. Final weight and weight
gain were increased whereas fat pads were decreased in birds fed diets containing SFAC or
LSAC compared to other groups. The values of omega-3 fatty acids, essential amino acids, and
antioxidants were increased while saturated fatty acids (SFA) declined in the meat of birds fed
diets supplemented with AC (SFAC & LSAC) compared to other groups. Lysine levels in the
meat of birds fed AC and/or linseed diets were inversely related to hepatic L-carnitine levels.
Breast meats of different broiler groups did not differ significantly in quality traits. However,
broilers fed AC-containing diets had relatively lower yellowness, redness, and Chroma values.
Conclusively, dietary combinations of AC with either SFO or LSO improved the performance,
fatty and amino acid profiles, oxidative stability, and meat quality of broiler chickens.
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