首页> 美国卫生研究院文献>The Journal of Poultry Science >Effects of Long-term Graded L-arginine Supply on Growth Development Egg Laying and Egg Quality in Four Genetically Diverse Purebred Layer Lines
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Effects of Long-term Graded L-arginine Supply on Growth Development Egg Laying and Egg Quality in Four Genetically Diverse Purebred Layer Lines

机译:长期分级L-精氨酸供应对四种遗传多种纯种层线生长发育鸡蛋铺设和鸡蛋质量的影响

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摘要

The present study was conducted to examine effects of long-term graded L-arginine supply on growth development, egg laying and egg quality in four genetically diverse purebred layer lines. The study comprised a rearing trial from hatch to week 16 and a following laying performance trial from week 17 to 41. After hatch 150 one-day-old female chicks of each genotype were distributed to three diets. The experimental diets were equivalent to 70, 100 and 200% L-arginine of age-specific recommended level ( ) and were offered to chicks (hatch to week 7), pullets (week 8 to 16) and hens (week 17 to 41). However, hens’ diets were quite low in crude protein. After a pre-laying period from week 17 to 21 thirty-six pullets of each group were used further in the laying performance trial. Independent of chicken's genetic background, insufficient L-arginine supply caused lower body weight, daily weight gain and daily feed intake during the rearing ( <0.001) and induced lower laying intensity and daily egg mass production in the laying period ( <0.05). Parameters fitted to Gompertz function suggested higher adult body weight in L-arginine supplemented birds compared to insufficient supplied ones ( <0.01). Groups fed with insufficient L-arginine reached age of maximum daily weight gain later and showed lowest maximum daily weight gain ( <0.001). As a consequence of limitations in dietary L-arginine and crude protein, high performing genotypes decreased strongly in body weight, daily feed intake and performance compared to the low performing genotypes. In conclusion, L-arginine modified the amount of weight gain and feed intake, especially in growing chicks and pullets independent of genetic background. The high performing hens were more nutritionally stressed than the low performing ones, because concentrations of dietary crude protein were relatively low.
机译:进行了本研究,以检查四种遗传多种纯种层线的长期评分L-精氨酸供应对生长发育,鸡蛋铺设和蛋质量的影响。该研究包括从舱口到第16周的饲养试验,并且在第17周至41周下铺设绩效审判。孵化150例每一项基因型的一天雌性小鸡被分发到三个饮食。实验饮食等同于年龄特异性推荐水平()的70,100和200%L-精氨酸,并提供给雏鸡(孵化到第7周),拔管(第8周至第16周)和母鸡(第17周至41) 。然而,母鸡的饮食在粗蛋白质中非常低。在将每组的第17周至第31周的预铺设期(每组三十六左右)之后,在铺设性能试验中进一步使用。独立于鸡肉的遗传背景,L-精氨酸供应不足,导致饲养期间的较低的体重,每日体重增加和日常进料摄入量(<0.001),并在铺设时期(<0.05)中诱导较低的铺设强度和日常蛋产量。与Gompertz功能合适的参数表明L-精氨酸补充鸟类的成人体重更高,与供应不足(<0.01)。饲喂L-精氨酸不足的组达到最大每日体重增加的年龄,并显示最低每日重量增益(<0.001)。由于膳食L-精氨酸和粗蛋白质的限制,与低性交基因型相比,体重,每日饲料摄入和性能的高表现基因型强烈降低。总之,L-精氨酸改性体重增加和进料摄入量,特别是在种植的小鸡和拔管中独立于遗传背景。高性能的母鸡比低性能更高,因为膳食粗蛋白的浓度相对较低。

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