Genetic parameter estimation for traits related to the immune system against sheep red blood cells in Japanese quail.

IF 1.6 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Batol Asghari, Saeed Zerehdaran, Zahra Kheirkhah
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引用次数: 0

Abstract

1. Improving resistance against disease is important in the animal and poultry industry. Besides drugs and vaccines, genetic selection for improved immune systems may be an effective approach.2. Traits related to the immune system were studied in a 938 pedigreed Japanese quail population infected by sheep red blood cells (SRBC). Besides body weight at 35 d of age (BW35), weight of the gizzard (G), liver (Li), lungs (Lu), bursa (Bu), spleen (S), heart (H), and digestive track (D) and length of ileum (I) and caecum (C) were recorded. Total antibody (TA), mercaptoethanol-resistant (IgG), mercaptoethanol-sensitive titres (IgM), the number of monocyte (M), basophil (B) and eosinophil (E) and the ratio of heterophil to lymphocyte (H/L) were measured. Co-variance components were estimated via Gibbs sampling using GIBBS3F90 software. Five univariate animal models, including simple forms, were used for genetic parameter estimations, and the best model was determined by the deviance information criterion (DIC). Genetic and environmental correlations were estimated using a bivariate animal model.3. Direct heritability estimates for internal organs ranged from 0.06 (Lu) to 0.57 (G) and for immune system traits from 0.05 (IgM) to 0.17 (IgG). Negative genetic correlations were found between BW35 and internal organs (-0.22 to -0.80).4. Including one of the internal organs, such as the spleen, in the selection index improved the immune response in heavier birds. Additionally, because of the moderate heritability of IgG (0.17) and its effect on lasting immunity, selecting for higher IgG concentration may improve the resistance of Japanese quail against pathogens.

日本鹌鹑对绵羊红细胞免疫系统相关性状的遗传参数估计
1.提高抗病能力对畜禽业非常重要。除药物和疫苗外,遗传选择改善免疫系统可能是一种有效的方法。 2. 研究了受绵羊红细胞(SRBC)感染的 938 只纯种日本鹌鹑群体的免疫系统相关性状。除 35 日龄体重(BW35)外,还记录了胗的重量(G)、肝脏的重量(Li)、肺脏的重量(Lu)、法氏囊的重量(Bu)、脾脏的重量(S)、心脏的重量(H)、消化道的重量(D)以及回肠的长度(I)和盲肠的长度(C)。测量总抗体(TA)、耐巯基乙醇抗体(IgG)、对巯基乙醇敏感的抗体滴度(IgM)、单核细胞(M)、嗜碱性粒细胞(B)和嗜酸性粒细胞(E)的数量以及嗜异性粒细胞与淋巴细胞的比率(H/L)。使用 GIBBS3F90 软件通过吉布斯采样估算共变成分。五个单变量动物模型(包括简单形式)被用于遗传参数估计,最佳模型由偏差信息标准(DIC)决定。内脏器官的直接遗传率估计值从 0.06(Lu)到 0.57(G)不等,免疫系统性状的直接遗传率估计值从 0.05(IgM)到 0.17(IgG)不等。BW35与内脏器官之间存在负遗传相关性(-0.22 至 -0.80)。 4.将脾脏等内脏器官之一纳入选择指数可改善体重较大的鸽子的免疫反应。此外,由于 IgG 的遗传率中等(0.17)及其对持久免疫力的影响,选择较高的 IgG 浓度可提高日本鹌鹑对病原体的抵抗力。
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来源期刊
British Poultry Science
British Poultry Science 农林科学-奶制品与动物科学
CiteScore
3.90
自引率
5.00%
发文量
88
审稿时长
4.5 months
期刊介绍: From its first volume in 1960, British Poultry Science has been a leading international journal for poultry scientists and advisers to the poultry industry throughout the world. Over 60% of the independently refereed papers published originate outside the UK. Most typically they report the results of biological studies with an experimental approach which either make an original contribution to fundamental science or are of obvious application to the industry. Subjects which are covered include: anatomy, embryology, biochemistry, biophysics, physiology, reproduction and genetics, behaviour, microbiology, endocrinology, nutrition, environmental science, food science, feeding stuffs and feeding, management and housing welfare, breeding, hatching, poultry meat and egg yields and quality.Papers that adopt a modelling approach or describe the scientific background to new equipment or apparatus directly relevant to the industry are also published. The journal also features rapid publication of Short Communications. Summaries of papers presented at the Spring Meeting of the UK Branch of the WPSA are published in British Poultry Abstracts .
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