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选择具有改善的先天免疫反应性的肉鸡,以减少农场中食源性病原体的感染。

Selection of broilers with improved innate immune responsiveness to reduce on-farm infection by foodborne pathogens.

作者信息

Swaggerty Christina L, Pevzner Igal Y, He Haiqi, Genovese Kenneth J, Nisbet David J, Kaiser Pete, Kogut Michael H

机构信息

Agricultural Research Service, United States Department of Agriculture, College Station, Texas 77845, USA.

出版信息

Foodborne Pathog Dis. 2009 Sep;6(7):777-83. doi: 10.1089/fpd.2009.0307.

Abstract

Economic pressure on the modern poultry industry has directed the selection process towards fast-growing broilers that have a reduced feed conversion ratio. Selection based heavily on growth characteristics could adversely affect immune competence leaving chickens more susceptible to disease. Since the innate immune response directs the acquired immune response, efforts to select poultry with an efficient innate immune response would be beneficial. Our laboratories have been evaluating the innate immune system of two parental broiler lines to assess their capacity to protect against multiple infections. We have shown increased in vitro heterophil function corresponds with increased in vivo resistance to Gram-positive and Gram-negative bacterial infections. Additionally, there are increased mRNA expression levels of pro-inflammatory cytokines/chemokines in heterophils isolated from resistant lines compared to susceptible lines. Collectively, all data indicate there are measurable differences in innate responsiveness under genetic control. Recently, a small-scale selection trial was begun. We identified sires within a broiler population with higher and/or lower-than-average pro-inflammatory cytokine/chemokine mRNA expression levels and subsequently utilized small numbers of high-expressing and low-expressing sires to produce progeny with increased or decreased, respectively, pro-inflammatory cytokine/chemokine profiles. This novel approach should allow us to improve breeding stock by improving the overall immunological responsiveness. This will produce a line of chickens with an effective pro-inflammatory innate immune response that should improve resistance against diverse pathogens, improve responses to vaccines, and increase livability. Ongoing work from this project is providing fundamental information for the development of poultry lines that will be inherently resistant to colonization by pathogenic and food-poisoning microorganisms. Utilization of pathogen-resistant birds by the poultry production industry would significantly enhance the microbiological safety of poultry products reaching the consumer.

摘要

现代家禽业面临的经济压力促使选育过程朝着饲料转化率降低的快速生长肉鸡发展。过度基于生长特性进行选育可能会对免疫能力产生不利影响,使鸡更容易感染疾病。由于先天免疫反应指导后天免疫反应,选择具有高效先天免疫反应的家禽将是有益的。我们的实验室一直在评估两个亲本肉鸡品系的先天免疫系统,以评估它们抵御多种感染的能力。我们已经表明,体外异嗜性细胞功能增强与体内对革兰氏阳性和革兰氏阴性细菌感染的抵抗力增强相对应。此外,与易感品系相比,从抗性品系分离的异嗜性细胞中促炎细胞因子/趋化因子的mRNA表达水平有所增加。总体而言,所有数据表明在遗传控制下先天反应性存在可测量的差异。最近,一项小规模的选育试验已经开始。我们在肉鸡群体中鉴定出促炎细胞因子/趋化因子mRNA表达水平高于和/或低于平均水平的雄鸡,随后利用少量高表达和低表达的雄鸡分别培育出促炎细胞因子/趋化因子谱增加或减少的后代。这种新方法应该能让我们通过提高整体免疫反应性来改良种鸡。这将培育出具有有效的促炎先天免疫反应的鸡品系,有望提高对多种病原体的抵抗力、改善对疫苗的反应并提高存活率。该项目正在进行的工作为开发对致病性和食物中毒微生物具有固有抗性的家禽品系提供了基础信息。家禽生产行业利用抗病禽鸟将显著提高进入消费者手中的家禽产品的微生物安全性。

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