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蛋氨酸来源和水平调节肉鸡肠道 pH 值、氨基酸转运体和代谢相关基因。

Methionine Source and Level Modulate Gut pH, Amino Acid Transporters and Metabolism Related Genes in Broiler Chickens.

机构信息

State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.

Adisseo France S.A.S., 20 rue Prosper Monnet, 69190 Saint Fons, France.

出版信息

J Agric Food Chem. 2024 Jul 17;72(28):15662-15671. doi: 10.1021/acs.jafc.4c01020. Epub 2024 Jul 8.

Abstract

This study determined the effects of two methionine (Met) sources at three total sulfur amino acids (TSAA) to lysine ratios (TSAA/Lys) on gut pH, digestive enzyme activity, amino acid transporter expression, and Met metabolism of broilers. The birds were randomly assigned to a 2 × 3 factorial arrangement with Met sources (dl-Met and dl-2-hydroxy-4-(methylthio)-butanoic acid (OH-Met)) and TSAA/Lys (0.58, 0.73, and 0.88) from 1 to 21 days. The results demonstrated that dl-Met and OH-Met supported the same growth performance, but high TSAA/Lys ratio reduced the feed intake and body weight ( < 0.05). OH-Met reduced the crop chyme pH and enhanced the jejunal lipase activity ( < 0.05). expression decreased with increased dl-Met levels in the duodenum; the low TSAA/Lys ratio induced a stronger mRNA expression of basolateral Met transporters. OH-Met resulted in an increase of cystathionine β-synthase expression in the liver and a decrease in serum homocysteine levels at middle TSAA/Lys ratio compared with dl-Met treatment ( < 0.05). In conclusion, two Met sources support the same growth, but OH-Met acidified the crop chyme. The investigated transporter transcripts differed significantly along the small intestine. At the middle TSAA/Lys ratio, OH-Met showed a higher metabolic tendency of the trans-sulfuration pathway compared with dl-Met.

摘要

本研究旨在确定两种蛋氨酸(Met)来源在三种总硫氨基酸(TSAA)与赖氨酸比例(TSAA/Lys)下对肉鸡肠道 pH、消化酶活性、氨基酸转运蛋白表达和 Met 代谢的影响。将鸡随机分为 2×3 因子设计,Met 来源(dl-Met 和 dl-2-羟基-4-(甲硫基)-丁酸(OH-Met))和 TSAA/Lys(0.58、0.73 和 0.88)从 1 日龄到 21 日龄。结果表明,dl-Met 和 OH-Met 支持相同的生长性能,但高 TSAA/Lys 比例降低了采食量和体重(<0.05)。OH-Met 降低了嗉囊食糜的 pH 值,并增强了空肠脂肪酶活性(<0.05)。十二指肠中 dl-Met 水平升高,导致表达降低;低 TSAA/Lys 比例诱导了基底外侧 Met 转运蛋白更强的 mRNA 表达。与 dl-Met 处理相比,OH-Met 在中间 TSAA/Lys 比例下导致肝脏中胱硫醚 β-合酶表达增加和血清同型半胱氨酸水平降低(<0.05)。总之,两种 Met 来源支持相同的生长,但 OH-Met 酸化了嗉囊食糜。研究的转运蛋白转录物在小肠中差异显著。在中间 TSAA/Lys 比例下,与 dl-Met 相比,OH-Met 显示出更高的转硫途径代谢倾向。

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