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日粮二氢杨梅素锌螯合物补充剂可改善麻岗鹅的肠道健康。

Dietary Dihydromyricetin Zinc Chelate Supplementation Improves the Intestinal Health of Magang Geese.

机构信息

College of Animal Science and Technology, Zhongkai University of Agriculture and Engineering, Guangzhou, China.

College of Chemistry and Chemical Engineering, Zhongkai University of Agricultural Engineering, 24 East Sand Street, Guangzhou, 510225, China.

出版信息

Biol Trace Elem Res. 2024 Nov;202(11):5219-5234. doi: 10.1007/s12011-024-04065-z. Epub 2024 Jan 24.

Abstract

To fulfill the nutritional requirements of poultry, effective Zn supplementation is required due to Zn deficiency in basic feed. In this study, we investigated the effects of DMY-Zn (dihydromyricetin zinc chelate) on the growth performance, morphology, and biochemical indices; the expression of intestinal barrier-related genes; the intestinal microflora; and the cecum metabolome of Magang geese. A total of 300 14-day-old Magang geese (equal number of males and females) with an average body weight of 0.82 ± 0.08 kg were randomly divided into five groups and fed a basal diet; these groups were given DMY-Zn (low, medium, or high level of DMY-Zn with 30, 55, or 80 mg/kg Zn added to the basal diet) or ZnSO (80 mg/kg Zn added) for 4 weeks. Our results revealed that DMY-Zn significantly impacts growth and biochemical indices and plays a significant role in regulating the intestinal barrier and microflora. DMY-Zn is involved in the upregulation of intestinal barrier gene (ZO1 and MUC2) expression, as well as upregulated Zn-related gene expression (ZIP5). On the other hand, a low concentration of DMY-Zn increased the ɑ diversity index and the abundance of Lactobacillus and Faecalibacterium. Additionally, a cecal metabolomics study showed that the main metabolic pathways affected by DMY-Zn were the pentose phosphate pathway, the biosynthesis of different alkaloids, and the metabolism of sphingolipids. In conclusion, DMY-Zn can reduce feed intake, increase the expression of intestinal barrier-related genes, help maintain the intestinal microflora balance, and increase the abundance of beneficial bacteria in the intestine to improve intestinal immunity.

摘要

为满足家禽的营养需求,由于基础饲料中缺锌,需要进行有效的锌补充。本研究旨在探讨 DMY-Zn(二氢杨梅素锌螯合物)对 Magang 鹅生长性能、形态、生化指标、肠道屏障相关基因表达、肠道微生物区系和盲肠代谢组的影响。选用 300 只 14 日龄 Magang 鹅(雌雄各半),平均体重为 0.82±0.08kg,随机分为 5 组,每组 60 只,分别饲喂基础日粮和添加不同水平 DMY-Zn(基础日粮中添加 30、55 和 80mg/kg Zn 的低、中、高 DMY-Zn)或 ZnSO(添加 80mg/kg Zn)的日粮,试验期 4 周。结果表明,DMY-Zn 显著影响 Magang 鹅的生长性能和生化指标,对肠道屏障和微生物区系具有显著的调控作用。DMY-Zn 上调了肠道屏障基因(ZO1 和 MUC2)和 Zn 相关基因(ZIP5)的表达。低浓度 DMY-Zn 增加了 α多样性指数和乳酸杆菌和粪杆菌的丰度。此外,盲肠代谢组学研究表明,DMY-Zn 主要影响戊糖磷酸途径、不同生物碱的生物合成和鞘脂代谢等代谢途径。综上所述,DMY-Zn 可以减少饲料摄入量,增加肠道屏障相关基因的表达,有助于维持肠道微生物区系平衡,增加有益菌在肠道中的丰度,从而提高肠道免疫力。

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