4.7 Article

An emerging role of vitamin D3 in amino acid absorption in different intestinal segments of on-growing grass carp (Ctenopharyngodon idella)

Journal

ANIMAL NUTRITION
Volume 10, Issue -, Pages 305-318

Publisher

KEAI PUBLISHING LTD
DOI: 10.1016/j.aninu.2022.05.004

Keywords

Vitamin D-3; Intestinal segment; Intestinal absorption; Amino acid transporter; Peptide transporter; TOR signaling

Funding

  1. National Key R&D Program of China [2019YFD0900200, 2018YFD0900400]
  2. National Natural Science Foundation of China for Outstanding Youth Science Foundation [31922086]
  3. Young Top-Notch Talent Support Program, China Agriculture Research System of MOF and MARA [CARS-45]
  4. Sichuan Science and Technology Program [2019YFN0036]

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This study investigated the effects of vitamin D-3 (VD3) on the growth performance, intestinal morphology, digestive absorption, and amino acid transport in grass carp. The results showed that VD3 supplementation improved the growth performance, intestinal structure, and enzyme activities in the fish. Furthermore, VD3 intake upregulated the expression of most intestinal free amino acids and their transporters, indicating an enhanced amino acid absorption capacity in the fish.
Vitamin D-3 (VD3), an essential nutrient for animals, has been demonstrated to stimulate the uptake of certain amino acids. However, the role of VD3 in the intestine, the primary site for digestion and absorption of nutrients, remains poorly characterized. Here, the grass carp (Ctenopharyngodon idella) was studied to assess the influence of different doses of VD3 (15.2, 364.3, 782.5,1,167.9, 1,573.8, and 1,980.1 IU/ kg) on growth performance, intestinal morphology, digestive absorption, amino acid transport, and potential signaling molecule levels in a feeding experiment. As a result, dietary VD3 improved growth performance, intestinal structure, and digestive and brush border enzyme activities. Additionally, most intestinal free amino acids and their transporters were upregulated after VD3 intake, except for Ala, Lys, Asp, Leu, solute carrier (SLC) 7A7, SLC1A5, and SLC1A3 mRNA in different segments, Leu and SLC6A14 mRNA in the proximal intestine, and SLC7A5 mRNA in the mid and distal intestine. In the crucial target of rapamycin (TOR) signal pathway of amino acid transport, the gene and protein expression of TOR, S6 kinase 1, and activating transcription factor 4 were elevated, whereas 4E-binding protein 1 was decreased, further suggesting an advanced amino acid absorption capacity in the fish due to VD3 supplementation. Based on percentage weight gain, feed efficiency, and trypsin activity, the VD(3 )requirements of on-growing grass carp were estimated to be 968.33, 1,005.00, and 1,166.67 IU/kg, respectively. Our findings provide novel recommendations for VD3 supplementation to promote digestion and absorption capacities of fish, contributing to the overall productivity of aquaculture. (C) 2022 Chinese Association of Animal Science and Veterinary Medicine. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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