Slaughter and carcass characteristics of cross- and purebred lambs finished in a pasture-based system

IF 0.7 4区 农林科学 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE
P. G. Theron, T.S. Brand, Schalk W P Cloete, J.H.C van Zyl, P.E. Strydom
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Abstract

One hundred and twelve cross- and purebred pasture-reared lambs were slaughtered at optimal backfat thickness (4 mm). Selected slaughter, carcass, and meat quality characteristics of these animals were assessed. Slaughter age, but not weight, was influenced by genotype, whereas rams were younger and heavier at slaughter than ewes. Throughout, the crossbred genotypes were younger at slaughter than their purebred contemporaries. Merinos had a lower dressing percentage (40.74%) than Dohne Merinos (43.89%), which in turn dressed out substantially lower than all crossbred combinations (~47%). Genotype did not influence the fat or bone percentage in the carcass, but differences existed for the meat percentage. Meat from all groups could be described as very tender (<32.96 N) and acceptable even to consumers not preferring pasture-produced lamb. The reduced slaughter age of crossbred lambs presents the possibility of shortening the production cycle of lamb while simultaneously increasing carcass yields.
以牧草为基础的饲养系统中杂交羔羊和纯种羔羊的屠宰和胴体特征
以最佳背膘厚度(4 毫米)屠宰了 112 只杂交羔羊和纯种牧场饲养羔羊。对这些动物的屠宰、胴体和肉质特征进行了评估。屠宰年龄(而非体重)受基因型的影响,而公羊比母羊更年轻,屠宰时更重。总体而言,杂交基因型的母羊屠宰年龄比纯种母羊小。美利奴的屠宰率(40.74%)低于多恩美利奴(43.89%),而多恩美利奴的屠宰率又大大低于所有杂交组合(约 47%)。基因型对胴体中的脂肪或骨骼比例没有影响,但肉质比例存在差异。所有组别的羊肉都非常嫩(<32.96 N),即使不喜欢牧场生产的羊肉的消费者也能接受。杂交羔羊屠宰年龄的降低为缩短羔羊生产周期,同时提高胴体产量提供了可能。
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来源期刊
South African Journal of Animal Science
South African Journal of Animal Science 农林科学-奶制品与动物科学
CiteScore
1.50
自引率
0.00%
发文量
39
审稿时长
>36 weeks
期刊介绍: The South African Journal of Animal Science is an open access, peer-reviewed journal for publication of original scientific articles and reviews in the field of animal science. The journal publishes reports of research dealing with production of farmed animal species (cattle, sheep, goats, pigs, horses, poultry and ostriches), as well as pertinent aspects of research on aquatic and wildlife species. Disciplines covered nutrition, genetics, physiology, and production systems. Systematic research on animal products, behaviour, and welfare are also invited. Rigorous testing of well-specified hypotheses is expected.
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