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Phytase dosing affects phytate degradation and Muc2 transporter gene expression in broiler starters

机译:植酸酶给药影响肉鸡初学者中的植酸降解和MUC2转运蛋白表达

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摘要

This study was conducted to determine effects of high phytase use on growth performance, amino acid (AA) digestibility, intestinal phytate breakdown, and nutrient transporter expression in starter broiler chickens. Male Ross 308 chicks were allocated to 24 pens, at 15 birds/pen and assigned to one of 4 dietary treatments. Treatments were: a control diet (PCa+) that contained adequate levels of calcium (Ca) and phosphorus (P) for growing broiler chicks; a reduced Ca and P diet (PCa–:–1.5 g P/kg and –1.6 g Ca/kg), and 2 additional diets in which phytase was supplemented in the PCa– diet at 1,500 (PCa-Phy1500) and 3,000 (PCa-Phy3000) FTU/kg feed. A common starter diet was fed from day 1 to 8. From day 8 to 22, birds were fed the 4 experimental diets. On day 22, birds were killed for sample collection. From day 8 to 15, average daily gain and average daily feed intake were not different across treatments (P < 0.05) but gain-to-feed ratio (G:F) was reduced (P < 0.006) in the PCa– treatment compared with other treatments. There were no further performance differences, but a tendency of phytase treatments improving the overall G:F (P = 0.079; day 8–22). Up to both the duodenum–jejunum and ileum, phytate, P, and Ca disappearance were increased (P < 0.05) in the PCa-Phy1500 and PCa-Phy3000 treatments compared with PCa– treatment. Phytase dose dependently increased myoinositol (MI) concentration in the digesta from both the duodenum–jejunum and ileum (P < 0.001). The highest concentration of MI was found in the PCa-Phy3000 treatment. Plasma MI concentration was increased by phytase supplementation (P < 0.001). Prececal disappearance of Cys was lower (P < 0.05) in the PCa– treatment than in PCa1and PCa-Phy3000 treatment. Expression of MUC2 in the duodenum–jejunum was higher (P < 0.05) in the PCa-Phy3000 treatment than in other treatments. Phytase-induced hydrolysis of phytate led to elevated digesta and plasma MI concentrations and reduced digesta concentrations of phytate breakdown intermediates
机译:进行该研究以确定高植酸酶对生长性能的影响,氨基酸(AA)消化率,肠植物崩解和起始肉鸡鸡中的营养转运蛋白表达。雄性罗斯308雏鸡被分配到24张笔,15只鸟类/笔,并分配到4个膳食治疗中的一个。治疗是:一种控制饮食(PCA +),其包含适当水平的钙(CA)和磷(P)用于种植肉鸡小鸡;降低的Ca和P饮食(PCA - : - 1.5g p / kg和-1.6g Ca / kg),以及2种植物蒸发酶在PCA-饮食中补充了植物钠(PCA-PHY1500)和3,000(PCA -phy3000)FTU / kg饲料。将常见的起始饮食从第1天到8日喂养。从第8天到22日,喂养4次实验饮食。在第22天,鸟类被杀死了样品收集。从第8天到15日,在治疗中平均每日增益和平均每日进料摄入量并不不同(P <0.05),但与...相比,PCA治疗中的增益与进给比(G:F)降低(P <0.006)其他治疗。没有进一步的性能差异,但植酸酶治疗的趋势改善了整体g:f(p = 0.079;第8-22天)。与PCA-处理相比,PCA-PHY1500和PCA-PHY3000治疗中增加(P <0.05)增加(P <0.05),植物,P <0.05)均达到duodenum-jeumum和回肠,植物,p <0.05)。从Duodenum-Jejunum和Hileum依赖性地增加了Digesta中的肌肌醇(MI)浓度(P <0.001)。在PCA-PHY3000治疗中发现了最高浓度的MI。通过植酸酶补充增加血浆MI浓度(P <0.001)。 PCA治疗中PCA的PCA治疗较低(P <0.05),PCA1和PCA-PHY3000治疗较低(P <0.05)。在PCA-PHY3000处理中,MUC2在Duodenum-Jejunum中的表达比其他处理更高(P <0.05)。植酸酶诱导的植物水解LED升高的DIGESTA和血浆MI浓度,并减少了植物分解中间体的减少的植物浓度

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