Gilbert William, Bellet Camille, Blake Damer P, Tomley Fiona M, Rushton Jonathan
Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool, Liverpool, United Kingdom.
Department of Pathobiology and Population Sciences, Royal Veterinary College, Hatfield, United Kingdom.
Front Vet Sci. 2020 Nov 5;7:558182. doi: 10.3389/fvets.2020.558182. eCollection 2020.
Ionophore compounds active against species are widely used in intensive broiler systems and have formed the backbone of coccidiosis control for almost 50 years. Producers, however, are under pressure to reduce ionophore use due to consumer concerns over antimicrobial usage in food animals, and antimicrobial resistance. Moreover, current vaccines against are commonly considered to be less cost-effective in intensive broiler systems, especially in Europe where attenuated live vaccines are used. An economic assessment of the impact of and the disease coccidiosis, including the cost implications of different efficacies of control, is therefore timely to provide evidence for industry and policy development. A mechanistic model of broiler production under varying infection and control states was used to construct a dataset from which system productivity can be measured. Coccidiosis impact increased rapidly as control efficacy decreased. In the total absence of control, median impact was found to maximize at between €2.55 and €2.97 in lost production per meter squared of broiler house over a 33 day growing period. Coccidiosis remains a major risk to intensive broiler systems and the model developed allows investigation of issues related to coccidiosis control, antimicrobial use and the development of antimicrobial resistance.
对[某种球虫]有效的离子载体化合物在集约化肉鸡养殖系统中广泛使用,并且在近50年里一直是球虫病防控的支柱。然而,由于消费者对食用动物抗菌药物使用以及抗菌药物耐药性的担忧,生产商面临着减少离子载体使用的压力。此外,目前针对[某种球虫]的疫苗在集约化肉鸡养殖系统中通常被认为成本效益较低,尤其是在使用减毒活疫苗的欧洲地区。因此,对[某种球虫]和球虫病影响进行经济评估,包括不同防控效果的成本影响,对于为行业和政策发展提供证据来说很及时。利用一个在不同感染和防控状态下的肉鸡生产机理模型构建了一个数据集,从中可以衡量系统生产力。随着防控效果下降,球虫病影响迅速增加。在完全没有防控的情况下,发现在33天的生长周期内,每平方米肉鸡舍的生产损失中位数在2.55欧元至2.97欧元之间达到最大值。球虫病仍然是集约化肉鸡养殖系统的主要风险,所开发的模型能够对与球虫病防控、抗菌药物使用和抗菌药物耐药性发展相关的问题进行调查。