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壳寡糖补充剂可缓解饲粮添加地塞米松对肉鸡造成的应激。

Chitosan oligosaccharide supplementation alleviates stress stimulated by in-feed dexamethasone in broiler chickens.

机构信息

Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.

Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Poult Sci. 2020 Apr;99(4):2061-2067. doi: 10.1016/j.psj.2019.11.047. Epub 2020 Feb 28.

Abstract

This experiment was conducted to investigate the effect of dietary chitosan oligosaccharide (COS) on growth performance, nutrient digestibility, jejunal morphology, gene expression, and plasma antioxidant enzymes in male broiler chickens under experimentally induced stress via in-feed dexamethasone (DEX). On day 3 after hatching, male broiler chicks were assigned to 2 diets supplemented with COS at 0 or 1 g/kg in a randomized complete block design and fed to day 27 after hatching. Birds were pooled within each diet (0 or 1 g/kg COS) to equalize the average BW and fed 2 diets supplemented with 0 or 1 g/kg DEX, within each dietary COS, from day 20 to 27 after hatching. This resulted in a 2 × 2 factorial arrangement of treatments with 2 levels each of COS and DEX, 8 replicate cages of 7 birds per cage. On day 27 after hatching, birds were weighed and euthanized, and samples were collected. Dietary COS decreased (P < 0.05) DEX-induced effects (interaction; P < 0.05) on BW, BW gain, and gain:feed. Dietary COS supplementation attenuated the DEX effects (interaction; P < 0.05) on villus height, crypt depth, villus height to crypt depth ratio, and ileal digestibility of dry matter and energy. The DEX-induced effect of relative mRNA expression of jejunal mucosa IL-6, IL-10, and claudin-1 was reduced by dietary COS supplementation (interaction; P < 0.05). Responses (interaction; P < 0.05) in the activity of plasma superoxide dismutase, catalase, and glutathione peroxidase to COS and DEX were similar to those observed with the relative mRNA expression. Chitosan oligosaccharide supplementation increased (P < 0.05) the mRNA expression of IL-8 and occludin. In conclusion, dietary COS decreased the DEX-induced effect by improving growth performance, nutrient digestibility, jejunal morphology, gene expression, and plasma antioxidant enzymes in broiler chickens. This implies that dietary COS may be useful for ameliorating the negative effect of stress on gut health in broiler chickens.

摘要

本实验旨在研究饲粮壳寡糖(COS)对经饲粮添加地塞米松(DEX)诱导应激的雄性肉鸡生长性能、养分消化率、空肠形态、基因表达和血浆抗氧化酶的影响。在孵化后第 3 天,雄性肉鸡采用完全随机分组设计,按体重分为 2 个饲粮,每个饲粮添加 0 或 1 g/kg COS,分别饲养至孵化后第 27 天。在每个饲粮(0 或 1 g/kg COS)内,将鸡平均体重相等的鸡合并,在饲粮添加 0 或 1 g/kg DEX,从孵化后第 20 天至第 27 天,每个饲粮添加 1 个 DEX 水平。结果形成了 2 个因素(COS 和 DEX)2 个水平的完全随机分组设计,每个处理 8 个重复,每个重复 7 只鸡。孵化后第 27 天,称重并处死鸡,采集样品。饲粮 COS 降低了 DEX 诱导的(互作;P<0.05)对 BW、BW 增重和增重:采食量的影响。饲粮 COS 补充剂减轻了 DEX 对绒毛高度、隐窝深度、绒毛高度与隐窝深度比和回肠干物质和能量消化率的影响(互作;P<0.05)。饲粮 COS 补充剂降低了空肠黏膜 IL-6、IL-10 和 Claudin-1 的相对 mRNA 表达的 DEX 诱导效应(互作;P<0.05)。对血浆超氧化物歧化酶、过氧化氢酶和谷胱甘肽过氧化物酶活性的响应(互作;P<0.05)与相对 mRNA 表达相似。壳寡糖补充剂增加了(P<0.05)IL-8 和 Occludin 的 mRNA 表达。综上所述,饲粮 COS 通过改善生长性能、养分消化率、空肠形态、基因表达和血浆抗氧化酶,降低了 DEX 诱导的肉鸡的应激效应。这表明饲粮 COS 可能有助于改善肉鸡肠道健康的应激负面影响。

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