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March 5, 2026Poultry1 citationsOpen Access

Meat Quality of Two ECC-Approved Chicken Genotypes with Different Growth Rates Subjected to Moderate Kinetic Activity and Compared with a Fast-Growing Genotype

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FFFrancesca Di FedericoABAlessandro Dal BoscoLBLuigia Bosa

Key Points

  • This study aims to compare the meat quality of different chicken genotypes with varying growth rates under controlled activity conditions.
  • Comparison of two ECC-approved chicken genotypes with slow and medium growth rates against a fast-growing genotype.
  • Assignment of chickens to control and treatment groups based on activity levels.
  • Assessment of meat quality parameters including protein content, oxidative status, and fatty acid composition.
  • Slow-growing and medium-growing chickens had superior meat quality compared to fast-growing chickens.
  • Significant improvement observed in protein content and fatty acid profile of slower genotypes.
  • Kinetic activity had less impact on meat quality compared to the genotype itself.

Abstract

Over the years, poultry supply chains have prioritized highly productive genetic lines to meet consumer demand, often at the expense of meat quality, animal welfare, and animal health. Recently, however, industry trends have shifted toward a greater awareness of welfare, reduced farming intensity, and improved product quality. In response, the European Chicken Commitment (ECC) has advocated for the use of slower-growing genotypes, even within conventional production systems. This study aimed to evaluate the meat quality of two ECC-approved chicken genotypes with differing growth rates—slow-growing (SG: 30–40 g/day, Kabir) and medium-growing (MG: 40–50 g/day, Ranger Gold) in comparison with a fast-growing strain (FG: >65 g/day, Ross 308). A total of 300 chickens were assigned to two experimental conditions: a control group (C), with spontaneous activity, and a treatment group (M), subjected to induced moderate kinetic activity. The results demonstrated that genotype influenced the meat quality of chickens raised indoors more significantly than kinetic activity. Comparisons revealed that SG and MG chickens exhibited superior meat quality, particularly regarding protein content, oxidative status, and a more suitable fatty acid profile. Overall, our findings support the adoption of ECC-approved genotypes in indoor systems to simultaneously improve animal welfare and enhance the nutritional and technological quality of poultry meat.

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Cite This Study

Federico et al. (2026) studied this question.

synapsesocial.com/papers/69a91db5d6127c7a504c0c07https://doi.org/10.3390/poultry5020021
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