Animals · 2019 · 28 citations · 22 references
NutritionEngineeringFood PreservationMeat QualityPolyethylene GlycolBody CompositionBiochemical EngineeringFeed AdditiveHealth SciencesGrape PomaceFood CompositionIn Vitro FermentationAnimal NutritionFeed EvaluationFood QualityPolyethylene Glycol TreatmentPhysiologyBiotechnologyMeat Quality ResponsesPoultry FarmingFood BioprocessingMicrobiologyMetabolismMeat SciencePoultry ScienceFibrolytic Enzymes
The amount of grape pomace (GP) waste that can be included as a functional feed in broiler diets is limited by anti-nutritional compounds such as fiber and condensed tannins. This study evaluated the effect of pre-treating GP with polyethylene glycol (PEG) and a cellulolytic enzyme mixture on physiological and meat quality parameters of broilers. Cobb 500 broilers (249.2 ± 20.31 g live-weight) were reared on five isoenergetic and isonitrogenous diets: 1. Commercial chicken diet (CON); 2. CON containing untreated GP at 100 g/kg (dGP); 3. CON containing 100 g/kg GP pre-treated with PEG (50 g/kg) (dPEG); 4. CON containing 100 g/kg GP pre-treated with enzyme (1 g/kg) (ENZ); and 5. CON containing 100 g/kg GP pre-treated with PEG (50 g/kg) and enzyme (1 g/kg) (PENZ). Overall body weight gains were similar in broilers reared on the CON, dPEG, ENZ and PENZ diets but lower in dGP chickens. The meat of birds reared on dPEG, ENZ, dGP and CON had a similar water-holding capacity, which was lower than in PENZ chickens. Diets influenced the size of duodenum, ileum, jejunum and caeca. Polyethylene glycol treatment promoted similar body weight gains and hot carcass weights as the commercial control diet, suggesting that the anti-nutritional effects of condensed tannins were successfully ameliorated.
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Transport stress in broilers: I. Blood metabolism, glycolytic potential, and meat quality
L. Zhang, Hui Yue, H.J. Zhang et al. · Poultry Science · 2009 · 212 citations · Full text