首页> 外文期刊>Journal of Animal Science and Biotechnology >Evaluation of fatty acid metabolism and innate immunity interactions between commercial broiler, F1 layer × broiler cross and commercial layer strains selected for different growth potentials
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Evaluation of fatty acid metabolism and innate immunity interactions between commercial broiler, F1 layer × broiler cross and commercial layer strains selected for different growth potentials

机译:评估商品肉鸡,F1层×肉鸡杂交和根据不同生长潜力选择的商品肉鸡菌株之间的脂肪酸代谢和先天免疫相互作用

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Background The broiler industry has undergone intense genetic selection over the past 50?yr. resulting in improvements for growth and feed efficiency, however, significant variation remains for performance and growth traits. Production improvements have been coupled with unfavourable metabolic consequences, including immunological trade-offs for growth, and excess fat deposition. To determine whether interactions between fatty acid (FA) metabolism and innate immunity may be associated with performance variations commonly seen within commercial broiler flocks, total carcass lipid %, carcass and blood FA composition, as well as genes involved with FA metabolism, immunity and cellular stress were investigated in male birds of a broiler strain, layer strain and F1 layer × broiler cross at d 14 post hatch. Heterophil: lymphocyte ratios, relative organ weights and bodyweight data were also compared. Results Broiler bodyweight ( n =?12) was four times that of layers ( n =?12) by d 14 and had significantly higher carcass fat percentage compared to the cross ( n =?6; P =?0.002) and layers ( P =?0.017) which were not significantly different from each other ( P?= 0.523). The carcass and whole blood FA analysis revealed differences in the FA composition between the three groups indicating altered FA metabolism, despite all being raised on the same diet. Genes associated with FA synthesis and β -oxidation were upregulated in the broilers compared to the layers indicating a net overall increase in FA metabolism, which may be driven by the larger relative liver size as a percentage of bodyweight in the broilers. Genes involved in innate immunity such as TLR2 and TLR4 , as well as organelle stress indicators ERN1 and XBP1 were found to be non-significant, with the exception of high expression levels of XBP1 in layers compared to the cross and broilers. Additionally there was no difference in heterophil: lymphocytes between any of the birds. Conclusions The results provide evidence that genetic selection may be associated with altered metabolic processes between broilers, layers and their F1 cross. Whilst there is no evidence of interactions between FA metabolism, innate immunity or cellular stress, further investigations at later time points as growth and fat deposition increase would provide useful information as to the effects of divergent selection on key metabolic and immunological processes.
机译:背景技术在过去的50年中,肉鸡行业经历了激烈的基因选择。从而改善了生长和饲料效率,但是,生产性能和生长性状仍存在重大差异。产量的提高与不利的代谢后果相结合,包括生长方面的免疫折衷和过多的脂肪沉积。为了确定脂肪酸(FA)代谢与先天免疫之间的相互作用是否可能与商业肉鸡群中常见的性能变化,total体总脂质%,car体和血液FA组成以及与FA代谢,免疫和细胞相关的基因有关在孵化后第14天,对雄性禽的肉仔鸡品系,蛋鸡品系和F1层×肉鸡杂交的应激进行了研究。还比较了嗜异性细胞:淋巴细胞比率,相对器官重量和体重数据。结果到第14天,肉鸡体重(n =?12)是蛋鸡体重(n =?12)的四倍,且car体脂肪百分比显着高于杂交肉(n =?6; P =?0.002)和蛋鸡(P彼此之间没有显着差异(P = 0.523)。 car体和全血FA分析显示,尽管所有组均在相同饮食下饲养,但三组之间的FA组成存在差异,表明FA代谢发生了变化。与蛋鸡相比,肉鸡与FA合成和β-氧化相关的基因上调,表明FA代谢的总体净增加,这可能是由相对大的肝脏相对于肉鸡体重的百分比驱动的。发现与先天免疫有关的基因,例如TLR2和TLR4,以及细胞器应激指标ERN1和XBP1,与杂交和肉鸡相比,在各层中XBP1的高表达水平不重要。另外,任何鸟类之间的异嗜性:淋巴细胞没有差异。结论结果提供了遗传选择可能与肉鸡,蛋鸡及其F1代之间的代谢过程改变有关的证据。尽管没有证据表明FA代谢,先天免疫或细胞应激之间存在相互作用,但随着生长和脂肪沉积的增加,在稍后的时间点进行进一步研究将提供有用的信息,说明不同选择对关键代谢和免疫过程的影响。

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