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Shaping Goose Meat Quality: The Role of Genotype and Soy-Free Diets

2025, Dobrzyńska, Patrycja, Tomczyk, Łukasz, Stangierski, Jerzy, Hejdysz, Marcin, Szwaczkowski, Tomasz

The aim of this study was to evaluate the influence of genotype and diet on geese from crossbreeding meat lines Tapphorn (T) and Eskildsen (E). This study was conducted on 240 crossbred geese assigned to two dietary groups: an SBM diet group fed a standard soybean-based diet and an LPS diet group fed a yellow lupin-based diet. Birds were reared under identical management conditions and slaughtered at 17 weeks of age. The following traits were recorded: meat colour (CIELab), pH24, cooking loss, breast and thigh muscle texture (shear force and energy), and sensory traits. The results showed a significant effect of both genotype and diet on meat quality. The LPS diet lowered shear force and energy (by ~11%, p < 0.001), reduced cooking loss in breast muscles (by ~5%, p < 0.001), and improved the juiciness and flavour of thigh muscles. The ET genotype positively influenced the meat colour intensity (lower L*, higher a*), while the lupin-based diet improved technological parameters, especially the water-holding capacity. The results confirm that replacing soybean meal with yellow lupin protein is an effective nutritional strategy that can improve goose meat quality and sustainability without compromising the sensory quality. These outcomes support developing soy-free feeding strategies in goose production to meet consumer expectations and reduce reliance on imported feed.

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Effects of two alternative feeding diets on growth, feed efficiency and meat quality in crossbreeding goose populations

2025, Dobrzyńska, Patrycja, Tomczyk, Łukasz, Hejdysz, Marcin, Stangierski, Jerzy, Szwaczkowski, Tomasz

Abstract This study evaluated the effects of two dietary protein sources - standard soybean meal (SBM) and local protein sources (LPS: yellow lupin and rapeseed meal) - on growth performance, feed efficiency, and meat quality in two goose reciprocal crossbred populations of Eskildsen (E) and Tapphorn (T). The research material consisted of 240 geese (120 from each of the two groups TE and ET). The following traits were recorded: growth, feed intake, feed conversion ratio (FCR), carcass composition, and meat chemical composition, including fatty acid profiles. Results showed that LPS-fed geese had reduced body weight gain (BWG) during the first 28 days; however, this difference diminished over time. While final body weights were similar, cumulative feed intake was higher and FCR less efficient in the LPS group. The TE genotype exhibited superior growth and carcass weights compared to ET, suggesting a maternal heterosis effect. Although protein and mineral content were unaffected, meat from LPS-fed geese had higher polyunsaturated fatty acids (PUFA) and lower fat content, indicating potential nutritional benefits. In conclusion, yellow lupin can serve as a viable alternative to SBM in goose diets. On the other hand, effects of population on these studied traits are usually significant. It indicates formulating feeding strategies should be included genetic origin of population.