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Reducing the CP content in broiler feeds: impact on animal performance meatquality and nitrogen utilization

机译:降低肉鸡饲料中的CP含量:对动物性能肉的影响质量和氮利用

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摘要

Reducing the dietary CP content is an efficient way to limit nitrogen excretion in broilers but, as reported in the literature, it often reduces performance, probably because of an inadequate provision in amino acids (AA). The aim of this study was to investigate the effect of decreasing the CP content in the diet on animal performance, meat quality and nitrogen utilization in growing-finishing broilers using an optimized dietary AA profile based on the ideal protein concept. Two experiments (1 and 2) were performed using 1-day-old PM3 Ross male broilers (1520 and 912 for experiments 1 and 2, respectively) using the minimum AA:Lys ratios proposed by Mack et al. with modifications for Thr and Arg. The digestible Thr (dThr): dLys ratio was increased from 63% to 68% and the dArg:dLys ratio was decreased from 112% to 108%. In experiment 1, the reduction of dietary CP from 19% to 15% (five treatments) did not alter feed intake or BW, but the feed conversion ratio was increased for the 16% and 15% CP diets (+2.4% and +3.6%, respectively), while in experiment 2 (three treatments: 19%, 17.5% and 16% CP) there was no effect of dietary CP on performance. In both experiments, dietary CP content did not affect breast meat yield. However, abdominal fat content (expressed as a percentage of BW) was increased by the decrease in CP content (up to +0.5 and +0.2 percentage point, in experiments 1 and 2, respectively). In experiment 2, meat qualitytraits responded to dietary CP content with a higher ultimate pH and lower lightness anddrip loss values for the low CP diets. Nitrogen retention efficiency increased whenreducing CP content in both experiments (+3.5 points/CP percentage point). The mainconsequence of this higher efficiency was a decrease in nitrogen excretion (−2.5 g N/kg BWgain) and volatilization (expressed as a percentage of excretion: −5 points/CP percentagepoint). In conclusion, this study demonstrates that with an adapted AA profile, it ispossible to reduce dietary CP content to at least 17% in growing-finishing male broilers,without altering animal performance and meat quality. Such a feeding strategy couldtherefore help improving the sustainability of broiler production as it is an efficientway to reduce environmental burden associated with nitrogen excretion.
机译:降低饮食中CP含量是限制肉鸡氮排泄的有效方法,但是,正如文献报道的那样,它经常会降低生产性能,这可能是由于氨基酸(AA)含量不足所致。这项研究的目的是通过基于理想蛋白质概念的最佳日粮AA曲线,研究降低日粮中CP含量对生长肥育肉鸡的生产性能,肉品质和氮利用的影响。使用Mack等人提出的最小AA:Lys比值,使用1天大的PM3 Ross雄性肉鸡(分别为实验1和2的1520和912)进行了两次实验(1和2)。修改了Thr和Arg。可消化的Thr(dThr):dLys比从63%增加到68%,而dArg:dLys比从112%减少到108%。在实验1中,将日粮CP从19%降低到15%(五种处理方法)并没有改变饲料的摄入量或体重,但16%和15%CP日粮的饲料转化率增加了(+ 2.4%和+3.6分别为%(%),而在实验2(三种治疗方法:19%,17.5%和16%CP)中,饮食CP对性能没有影响。在两个实验中,饮食中CP含量均不影响胸脯肉产量。但是,腹部脂肪含量(表示为体重的百分比)通过CP含量的降低而增加(分别在实验1和2中分别达到+0.5和+0.2个百分点)。在实验2中,肉质性状对饮食中CP含量的响应具有较高的最终pH值和较低的亮度,并且低CP饮食的滴水损失值。氮保留效率提高时在两个实验中均降低CP含量(+3.5点/ CP百分点)。主要的更高效率的结果是氮排泄减少(−2.5 g N / kg BW增加和挥发(表示为排泄的百分比:-5点/ CP百分比)点)。总而言之,这项研究表明,通过调整后的AA配置文件,有可能使成年雄性肉鸡的日粮CP含量降低至至少17%,不会改变动物的性能和肉质。这样的喂养策略可以因此有助于提高肉鸡生产的可持续性,因为这是一种有效的方法减少与氮排泄相关的环境负担的方法。

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