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Individual variation and intraclass correlation in arachidonic acid and eicosapentaenoic acid in chicken muscle

机译:鸡肌肉中花生四烯酸和二十碳五烯酸的个体差异和类内相关性

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Chicken meat with reduced concentration of arachidonic acid (AA) and reduced ratio between omega-6 and omega-3 fatty acids has potential health benefits because a reduction in AA intake dampens prostanoid signaling, and the proportion between omega-6 and omega-3 fatty acids is too high in our diet. Analyses for fatty acid determination are expensive, and finding the optimal number of analyses to give reliable results is a challenge. The objective of the present study was i) to analyse the intraclass correlation of different fatty acids in five meat samples, of one gram each, within the same chicken thigh, and ii) to study individual variations in the concentrations of a range of fatty acids and the ratio between omega-6 and omega-3 fatty acid concentrations among fifteen chickens. Fifteen newly hatched broilers were fed a wheat-based diet containing 4% rapeseed oil and 1% linseed oil for three weeks. Five muscle samples from the mid location of the thigh of each chicken were analysed for fatty acid composition. The intraclass correlation (sample correlation within the same animal) was 0.85-0.98 for the ratios of total omega-6 to total omega-3 fatty acids and of AA to eicosapentaenoic acid (EPA). This indicates that when studying these fatty acid ratios, one sample of one gram per animal is sufficient. However, due to the high individual variation between chicken for these ratios, a relatively high number of animals (minimum 15) are required to obtain a sufficiently high power to reveal significant effects of experimental factors (e.g. feeding regimes). The present experiment resulted in meat with a favorable concentration ratio between omega-6 and omega-3 fatty acids. The AA concentration varied from 1.5 to 2.8 g/100 g total fatty acids in thigh muscle in the fifteen broilers, and the ratio between AA and EPA concentrations ranged from 2.3 to 3.9. These differences among the birds may be due to genetic variance that can be exploited by breeding for lower AA concentration and/or a more favorable AA/EPA ratio to produce meat with health benefits.
机译:降低花生四烯酸(AA)浓度并降低omega-6和omega-3脂肪酸比例的鸡肉具有潜在的健康益处,因为降低AA摄入量可抑制前列腺素信号传导,而omega-6和omega-3脂肪之间的比例降低我们的饮食中酸含量过高。脂肪酸测定的分析是昂贵的,并且找到最佳分析数量以给出可靠的结果是一个挑战。本研究的目的是:i)分析同一只鸡大腿内的五个肉样品(每个样品为1克)中不同脂肪酸的类内相关性;以及ii)研究一系列脂肪酸浓度的个体差异十五只鸡中omega-6和omega-3脂肪酸浓度的比率。向十五只新孵化的肉鸡饲喂含4%菜籽油和1%亚麻子油的小麦基饲料,持续三周。分析每只鸡大腿中部的五个肌肉样品的脂肪酸组成。对于总omega-6与总omega-3脂肪酸以及AA与二十碳五烯酸(EPA)的比率,组内相关性(同一动物内的样品相关性)为0.85-0.98。这表明在研究这些脂肪酸比率时,每只动物一份1克的样本就足够了。但是,由于这些比例鸡之间个体差异较大,因此需要相对较高数量的动物(最少15只)才能获得足够高的能量,以显示出实验因素(例如喂养方式)的显着影响。本实验得到的肉在omega-6和omega-3脂肪酸之间具有有利的浓缩比。在十五只肉鸡的大腿肌肉中,AA的浓度在1.5至2.8 g / 100 g总脂肪酸之间变化,AA和EPA的浓度之比在2.3至3.9之间。禽类之间的这些差异可能是由于遗传变异,可以通过繁殖获得较低的AA浓度和/或更有利的AA / EPA比来利用它们来生产具有健康益处的肉。

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