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Differences in textural properties of cooked caponized and broiler chicken breast meat
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Metadata
Document Title
Differences in textural properties of cooked caponized and broiler chicken breast meat
Author
U-chupaj J, Malila Y, Gamonpilas C, Kijroongrojana K, Petracci M, Benjakul S, Visessanguan W
Name from Authors Collection
Affiliations
Prince of Songkla University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); National Science & Technology Development Agency - Thailand; National Metal & Materials Technology Center (MTEC); University of Bologna
Type
Article
Source Title
POULTRY SCIENCE
Year
2017
Volume
96
Issue
7
Page
2491-2500
Open Access
hybrid, Green Submitted
Publisher
OXFORD UNIV PRESS
DOI
10.3382/ps/pex006
Format
Abstract
This study was aimed at evaluating textural properties of cooked chicken breast meats obtained from 3 production systems (conventional raising, feed modification, and caponization) and determining the relationship between instrumental parameters and sensory attributes associated with the texture of capon meat. Texture of cooked breast meats was determined using 3 instrumental methods: Warner-Bratzler Shear (WBS), texture profile analysis (TPA), and uniaxial compression (UC), and sensory analysis by trained panelists. The results indicated that cooked caponized meat showed the lowest values of WBS force, shear energy, hardness, Young's modulus of UC, and the 2 sensory attributes (firmness and number of chews) (P < 0.05). In contrast, springiness and juiciness were the highest in the caponized meat (P < 0.05), suggesting that capon meat was more tender and juicier than the others. Feedmodified chicken samples showed intermediate textural characteristics between the samples of capon and conventionally raised broiler. Pearson's correlation revealed that WBS force, shear energy, Young's modulus of UC, gumminess, and springiness were strongly correlated with 3 sensory attributes (firmness, number of chews, and juiciness). Partial least squares regression (PLSR) demonstrated that 72% of all sensory attributes for the first 2 PLSR components were explained by 36% of the instrumental parameters and the production systems. Loading and score plot illustrated that conventional raising contributed to a high degree of firmness and number of chews, and positively correlated with shear energy, WBS force, gumminess, hardness, and Young's modulus. Contrarily, caponization was negatively correlated with those sensory attributes. The univariate analysis indicated that firmness and number of chews were positively correlated with all instrumental parameters, except springiness. Juiciness was positively correlated with springiness but negatively correlated with the others. The study suggested that the cooked meat of capons could be differentiated from those of broilers raised conventionally and with feed-modified diets based on textural properties. Based on the optimized simulating equation, texture of caponized breast could be explained by WBS force, shear energy, Young's modulus, and gumminess.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
Funding Sponsor
Thailand Research Fund under the Royal Golden Jubilee Ph.D. Program [PHD/0282/2551]; Graduate School of Prince of Songkla University (Thailand); National Center for Genetic Engineering and Biotechnology (Thailand)
License
CC-BY-NC-ND
Rights
Authors
Publication Source
WOS