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Apparent jejunal amino acid digestibility, gut morphology, and the expression of intestinal amino acid transporters in pigs fed protein or free amino acids

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JOURNAL OF ANIMAL SCIENCE
卷 101, 期 -, 页码 -

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OXFORD UNIV PRESS INC
DOI: 10.1093/jas/skac417

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amino acid transporter; apparent jejunal digestibility; free amino acid; intestinal morphology; pig; protein

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This study compared the effects of different forms of dietary amino acids (AA) on the intestinal physiology of pigs and found that supplying AA in the form of free AA and small peptides resulted in higher apparent jejunal digestibility compared to supplying them as proteins. The faster absorption of small peptides may be the reason for this difference, and the different forms of AA also had an impact on intestinal morphology and gene expression of AA transporters.
Dietary amino acids (AA) supplied as protein or in free form are not only digested and absorbed at different rates but can also induce differences in the intestinal physiology of pigs. We compared the apparent jejunal AA digestibility, intestinal morphology, and gene expression of AA transporters of pigs fed diets providing different forms of AA. Thirty growing pigs (33.7 +/- 4.1 kg) were fed one of three experimental diets that provided AA either as protein from feather meal (INT), as free AA and small peptides obtained by extensive acid hydrolysis of feathers (HYD), or as a mix of individual purified AA with the same AA profile as HYD (FAA). Pigs were fed the same quantity of feed, energy, and AA. After 14 d, pigs were slaughtered 3 h after feeding a meal with indigestible markers. Digesta and tissue were collected from different sections of the small intestine. Jejunal digesta was used to measure apparent jejunal digestibility of AA. Samples of the duodenum, jejunum, and ileum were used to measure intestinal morphology and the gene expression of intestinal AA transporters. The measured apparent jejunal digestibility of AA of INT was lower compared to HYD and FAA (P < 0.05). The apparent jejunal digestibility of Cys, Gly, His, Met, and Pro was lower for FAA compared to HYD (P < 0.05). This may be due to the small peptides in HYD, which are absorbed faster than individual AA. The villi area in the ileum of HYD fed pigs was the highest (P < 0.05) among the treatments, which may be associated with the reabsorption of endogenous proteins, which occurs mostly in the ileum. In the duodenum, HYD and FAA had lower expression of PepT1 (P < 0.01) probably due to the rapid transit time of digesta compared to INT fed pigs. Pigs fed HYD expressed more ASCT2 (P = 0.02) and CAT-1 (P = 0.04) in the jejunum compared to the pigs fed the other diets. The expression of these transporters along the intestine depended on the relative abundance of readily absorbable dietary AA. Results showed that dietary AA form can have an influence on the morphology and on the expression of different AA transporters along the different sections of the small intestine. Dietary amino acids supplied in the diet of pig as protein or free form have different effects on the intestinal morphology and gene expression of amino acid transporters. Lay Summary The amino acids (AA) in the diet of pigs are usually supplied as a mix of proteins and free AA. Proteins need to be digested first before their constituent AA become available to the animal. Free AA, together with small peptides, are readily available without the need for digestion. Moreover, the different forms by which AA are supplied may also have an effect on intestinal physiology. In this experiment, pigs were fed different diets with the same AA profile but were provided either as protein, as free AA and small peptides originating from hydrolyzed protein, or as a mix of individual free AA. Results showed that feeding pigs free AA and/or small peptides resulted in higher apparent jejunal digestibility of AA compared to feeding proteins. Furthermore, the apparent jejunal digestibility of the AA of a hydrolyzed protein was higher than that of free AA. Providing diets with readily absorbable AA resulted in a higher surface area for absorption and an increase in the gene expression of AA transporters as opposed to proteins.

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