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首页> 外文期刊>Poultry Science >Hydrolysis of phytate to its lower esters can influence the growth performance and nutrient utilization of broilers with regular or super doses of phytase
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Hydrolysis of phytate to its lower esters can influence the growth performance and nutrient utilization of broilers with regular or super doses of phytase

机译:植物水解植物对其下酯可以影响具有规则或超剂量的植酸酶的肉鸡的生长性能和营养利用

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摘要

The aim of the study was to observe the effects of dietary available phosphorus (aP) and calcium (Ca), with regular or super doses of phytase, on phytate hydrolysis and subsequent influences on broiler growth performance and nutrient utilization. In a 2 x 3 factorial design, 384 Ross-308 broilers were allocated to one of 6 dietary treatments with 8 replicates in a randomized complete block design for 21 days. Diets were nutritionally adequate (positive control, PC) or marginally deficient in aP and Ca (negative control, NC), with 0, 500 or 1,500 FTU/kg phytase. Bird and feed weights were recorded on d 0 and 21, excreta were collected on d 19 and 20, and gizzard and ileal contents were collected on d 21. Body weight gain (P < 0.01) increased linearly with phytase in the PC and quadratically in the NC. There was an interactive effect on ileal DM, N, and P utilization, increasing quadratically with phytase supplementation in the NC, but there was no phytase influence in the PC (P < 0.05). Phytase linearly increased copper (P < 0.001) and linearly decreased Ca (P < 0.05) utilization in the ileum. Phytase decreased ileal (IPx, inositol x-phosphate) IP6 and IP5 and increased inositol (quadratic, P < 0.001) but had no effect on IP4 or IP3. The influence of the dietary aP was more apparent on the hydrolysis of phytate and phytate esters after the ileum, with increasing (linear and quadratic, P < 0.05) IP4 and IP3 content in the excreta of birds fed the NC or PC when phytase was added. Phytate hydrolysis improves the growth potential of birds fed NC diets, allowing them to match the growth performance of birds fed PC diets and improve nutrient utilization. These results indicate that dietary Ca and aP concentrations can be reduced when phytase is supplemented. It also may be beneficial to apply the enzyme nutrient matrix to other nutrients in the diet to maintain an optimal balance of nutrients in the digesta.
机译:该研究的目的是观察膳食可用磷(AP)和钙(CA)的影响,常规或超级剂量的植酸酶对植物水解和随后对肉鸡生长性能和营养利用的影响。在2 x 3因子设计中,384 ross-308肉鸡被分配给6个饮食治疗中的一个,其中8个重复在随机的完整块设计中21天。饮食营养营养充足(阳性对照,PC)或在AP和Ca(阴性对照,NC)中略微缺乏,0,500或1,500氟化酶。在D 0和21上记录禽类和饲料重量,在D 19和20上收集排泄物,并在D 21上收集G12.体重增加(P <0.01)与PC中的植酸酶线性增加和数量NC。对髂骨DM,N和P利用有一种互动效果,随着NC的植酸酶补充,增加了植酸酶,但PC中没有植酸酶影响(P <0.05)。植酸酶线性增加的铜(P <0.001),并在回肠下线性降低(P <0.05)利用。植酸酶降低髂骨(IPX,肌醇X-磷酸)IP6和IP5和肌醇增加(二次,P <0.001),但对IP4或IP3没有影响。饮食AP的影响更加明显,在回肠后的植物和植物酯的水解中更加明显,随着植物钠或PC的鸟类喂养的鸟类排泄中的IP4和IP3含量增加(线性和二次,P <0.05)IP4和IP3含量。植物水解改善了禽流喂养NC饮食的生长潜力,从而使它们匹配禽流喂养PC饮食的生长性能并提高营养利用。这些结果表明,当补充植酸酶时,可以减少膳食CA和AP浓度。将酶营养基质应用于饮食中的其他营养物中也可能有益,以保持消化物中的营养成分的最佳平衡。

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