| Literature DB >> 36103020 |
Xin-Yu Lei1,2, Dong-Ming Zhang1,2, Qiu-Ju Wang1,2, Gui-Qin Wang1,2, Yue-Hong Li1, Yu-Rou Zhang1,2, Men-Nan Yu1,2, Qi Yao2, Yu-Ke Chen3,4, Zhi-Xin Guo5,6.
Abstract
This study evaluated the effects of dietary administration of two indigenous Bacillus (A: basal control diet; B: 0.15 g/kg of Bacillus subtilis; C: 0.1 g/kg of Bacillus subtilis and 0.05 g/kg of Bacillus licheniformis; D: 0.05 g/kg of Bacillus subtilis and 0.1 g/kg of Bacillus licheniformis; E: 0.15 g/kg of Bacillus licheniformis) on the digestive enzyme activities, intestinal morphology, intestinal immune and barrier-related genes relative expression levels, and intestinal flora of Rhynchocypris lagowskii. The results showed that the fold height, lamina propria width, and muscle layer thickness of midgut and hindgut in group C were significantly higher than that of group A (P < 0.05). The activities of protease, amylase, and lipase in group C were significantly higher than those of group A (P < 0.05). The relative expression levels of IL-1β and IL-8 in the intestine of group C were significantly downregulated, and the relative expression levels of IL-10 and TGF-β were significantly upregulated (P < 0.05). The relative expression levels of Claudin-2 in group A significantly increased and the relative expression levels of Claudin-4 in group A significantly reduced compared with other groups (P < 0.05). The relative expression levels of ZO-1 in groups C and D were significantly higher than those of other groups (P < 0.05). The Bacillus in the intestine of group C has the highest relative abundance among all groups. Overall, it can generally be concluded that dietary supplementation of indigenous Bacillus subtilis and Bacillus licheniformis (group C) can improve the intestinal morphology, digestion, and absorption enzyme activities, enhance intestinal mucosal immunity and barrier function, and maintain the intestinal microbial balance of R. lagowskii.Entities:
Keywords: Bacillus; Digestive enzyme; Intestinal microbial diversity; Intestinal morphology; Rhynchocypris lagowskii
Year: 2022 PMID: 36103020 DOI: 10.1007/s10695-022-01121-0
Source DB: PubMed Journal: Fish Physiol Biochem ISSN: 0920-1742 Impact factor: 3.014