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预冷驯化可提高肉鸡的气管免疫功能和抗冷应激能力。

Pre-cold acclimation improves the immune function of trachea and resistance to cold stress in broilers.

机构信息

Laboratory of Animal Behavior and Welfare, College of Animal Science and Technology, Northeast Agricultural University, Harbin, China.

Laboratory of Genetics, College of Life Science, Northeast Agricultural University, Harbin, China.

出版信息

J Cell Physiol. 2019 May;234(5):7198-7212. doi: 10.1002/jcp.27473. Epub 2018 Oct 26.

Abstract

Acclimation can alleviate the damage caused by adverse environmental factors. To investigate the effects of cold stimulation on immunity in tracheal of broilers, 360 one-day-old chicks were raised at normal temperatures during 1-7 days. From 8 day, G1 (control) continued to be raised at normal temperatures, whereas G2 and G3 (treatment groups) were cold-stimulated at 3°C and 12°C below the temperature of G1, respectively. At 42 day, all the groups were subjected to a 24-hr acute cold stress, designated as S1, S2, and S3. Tracheal tissues were collected to detect gene levels of immunoglobulins, antimicrobial peptides, Hsps, and cytokines, and oxidative stress-related indicators at 14 day, 42 day, and 43 day, and protein levels of Hsps and proinflammatory cytokines as well as morphology changes at 42 day and 43 day. The results showed that, compared with 42G1, tracheal structure of 42G2 was basically intact, and gene levels of immunoglobulins and antimicrobial peptides increased (p < 0.05), whereas tracheal structure of 42G3 was destroyed, with decreased levels of immunoglobulins ( p < 0.05), and increased levels of Hsps and proinflammatory cytokines ( p < 0.05). At 43 day, tracheal damage was visible and gene levels of immunoglobulins and antimicrobial peptides decreased in S1 ( p < 0.05). Tracheal structure was relatively intact and gene levels of antimicrobial peptides increased in S2 ( p < 0.05). Compared with S1 and S3, immune-related gene levels in S2 were higher, and Hsps and proinflammatory cytokines levels were lower. The results demonstrate that cold stimulation of lower 3°C from 8 to 42 day led to cold acclimation, which improved immunity of tracheal mucosa and resistance to cold stress in broilers.

摘要

驯化可以减轻不利环境因素造成的损害。为了研究冷刺激对肉鸡气管免疫的影响,将 360 只 1 日龄雏鸡在正常温度下饲养至 1-7 天。从第 8 天开始,G1(对照组)继续在正常温度下饲养,而 G2 和 G3(处理组)分别在比 G1 低 3°C 和 12°C 的温度下进行冷刺激。在第 42 天,所有组均经历 24 小时急性冷应激,分别命名为 S1、S2 和 S3。在第 14 天、42 天和 43 天采集气管组织,检测免疫球蛋白、抗菌肽、Hsp 和细胞因子基因水平,在第 42 天和 43 天检测 Hsp 和促炎细胞因子蛋白水平以及气管形态变化。结果表明,与 42G1 相比,42G2 的气管结构基本完整,免疫球蛋白和抗菌肽基因水平增加(p<0.05),而 42G3 的气管结构被破坏,免疫球蛋白水平降低(p<0.05),Hsp 和促炎细胞因子水平升高(p<0.05)。在第 43 天,S1 可见气管损伤,免疫球蛋白和抗菌肽基因水平降低(p<0.05)。S2 气管结构相对完整,抗菌肽基因水平升高(p<0.05)。与 S1 和 S3 相比,S2 的免疫相关基因水平较高,Hsp 和促炎细胞因子水平较低。结果表明,从第 8 天至第 42 天,3°C 的低温刺激导致冷驯化,提高了肉鸡气管黏膜的免疫力和对冷应激的抵抗力。

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