Yangyang Hu, Yun Hu, Xi Lin, Hsiao-Ching Liu, Jack Odle, Miles Todd See, Liyang Zhang, Xugang Luo
Three experiments were conducted to elucidate the protective mechanisms of zinc (Zn) as ZnSO4.7H2O (ZnSO4) or Zn proteinate with moderate chelation strength (Zn-Prot M) against heat stress (HS)-induced damage to broiler intestine or jejunal organoids. In experiment 1, under high temperature (HT: 34 ± 1°C, 8 h/d; 28 ± 1°C, 16 h/d), a control (HT-CON) and four groups from a 2 (Zn sources: Zn-Prot M and ZnSO4) × 2 (added Zn levels: 30 and 60 mg/kg) factorial arrangement were designed. Under normal temperature (NT: 23 ± 1°C, 24 h/d), a control (NT-CON) and a pair-fed group were included. HS increased (P < 0.04) broiler serum diamine oxidase activity and fluorescein isothiocyanate dextran content. However, dietary added Zn, notably at 60 mg/kg, decreased (P < 0.02) these elevated serum indices in HS-broilers. In experiment 2, transcriptome sequencing was conducted in jejunal tissues collected from the broilers in the groups of NT-CON, HT-CON, HT-ZnSO4 and HT-Zn-Prot M at 60 mg/kg. Dietary supplemental Zn, especially Zn-Prot M, mitigated the HS-induced inhibitions of the phosphatidylinositol 3-kinase (PI3K)/serine threonine kinase (AKT), mitogen activated protein kinase (MAPK), and cell cycle pathways. In experiment 3, broiler jejunal organoids were maintained under NT (40°C, CON) and HT (44°C, 12 h, HS). The HT groups comprised a control and a 2 × 2 factorial arrangement of added Zn sources (Zn-Prot M and ZnSO4) and levels (50 and 100 μmol/L). Supplemental Zn, especially Zn-Prot M at 50 μmol/L, mitigated (P < 0.05) HS-induced inhibitions of mRNA or protein expression levels of occludin, junctional adhesion molecule 1/3, zonula occludens-1, Zn finger protein A20 (A20) and cyclin-B1/D1, and promotions of mRNA or protein expression levels of nuclear factor kappa-B (NF-κB) p65 and matrix metalloproteinase (MMP)-2/9. In conclusion, the optimal supplemental Zn, particularly Zn-Prot M, could effectively mitigate HS-induced damage to broiler intestine or jejunal organoids possibly by promoting cell proliferation and the expression of tight junction proteins via the PI3K/AKT, MAPK, A20/NF-κB p65/MMP-2/9 and cell cycle pathways.