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首页> 外文期刊>Poultry Science >Dietary protein composition influences abundance of peptide and amino acid transporter messenger ribonucleic acid in the small intestine of 2 lines of broiler chicks
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Dietary protein composition influences abundance of peptide and amino acid transporter messenger ribonucleic acid in the small intestine of 2 lines of broiler chicks

机译:日粮蛋白质组成影响2羽肉仔鸡小肠中肽和氨基酸转运蛋白信使核糖核酸的丰度

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This study evaluated the effect of dietary protein composition on mRNA abundance of a peptide transporter (peptide transporter 1, PepT1), amino acid (AA) transporters [Na+-independent cationic and zwitterionic AA transporter (b(o,+)AT), excitatory AA transporter 3 (EAAT3), Na+-independent cationic and Na+-dependent neutral AA transporter 2 (y(+)LAT2), L-type AA transporter 1 (LAT1), and cationic AA transporter 1 (CAT1)], and a digestive enzyme (aminopeptidase N) in 2 lines (A and B) of broilers that differentially express PepT1 mRNA (line B > line A). From d 8 to 15 posthatch, birds were fed 1 of 3 diets. Protein sources included whey protein concentrate, a whey partial hydrolysate (WPH), or a mixture of free AA (AA) identical to the composition of whey. Quantities of mRNA were assayed by real-time PCR in the small intestine of males at d 8, 9, 11, 13, and 15. For all genes except LAT1, abundance of mRNA was greatest in line B birds that consumed the WPH diet (P < 0.006). When mRNA abundance was normalized to beta-actin quantities, this effect disappeared, demonstrating a generalized effect on gene expression in line B birds that consumed the hydrolysate. There was a greater villus height: crypt depth ratio (P < 0.05) in line B birds fed the WPH diet as compared with line A. In conclusion, line B birds, which express greater PepT1, displayed enhanced intestinal mucosal absorptive surface area and differential regulation of PepT1, AA transporters, and aminopeptidase N in response to dietary protein composition.
机译:这项研究评估了膳食蛋白质组成对肽转运蛋白(肽转运蛋白1,PepT1),氨基酸(AA)转运蛋白[Na +独立的阳离子和两性离子AA转运蛋白(b(o,+)AT),兴奋性的mRNA丰度的影响AA转运蛋白3(EAAT3),不依赖Na +的阳离子和依赖Na +的中性AA转运蛋白2(y(+)LAT2),L型AA转运蛋白1(LAT1)和阳离子AA转运蛋白1(CAT1)]和消化液肉鸡的2个品系(A和B)中的酶(氨基肽酶N)差异表达PepT1 mRNA(品系B>品系A)。孵化后第8至15天,以3种饮食中的1种喂养鸟类。蛋白质来源包括乳清蛋白浓缩物,乳清部分水解产物(WPH)或与乳清成分相同的游离AA(AA)混合物。在第8、9、11、13和15天时,通过实时PCR在雄性小肠中检测mRNA的数量。对于除LAT1以外的所有基因,在食用WPH饮食的B系禽中,mRNA的丰度最大( P <0.006)。当将mRNA丰度标准化为β-肌动蛋白的量时,这种作用消失了,表明对消耗水解产物的B系禽类的基因表达具有普遍影响。与A系相比,饲喂WPH日粮的B系禽具有更高的绒毛高度:隐窝深度比(P <0.05)。总之,Bp禽表达更高的PepT1,表现出增强的肠粘膜吸收表面积和差异调节PepT1,AA转运蛋白和氨肽酶N响应饮食蛋白质组成。

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