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Pathogenicity of biological control agents for livestock ectoparasites: a simulation analysis.

机译:牲畜体外寄生虫生物防治剂的致病性:模拟分析。

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The management of arthropod ectoparasites of livestock currently relies largely on the use of neurotoxic chemicals. However, concerns over the development of resistance, as well as operator and environmental contamination, have stimulated research into alternative approaches to their control, including the use of biological pathogens. The search for suitable pathogens often focuses on identifying the most highly virulent agents for application. However, practical issues such as the ability of a pathogen to penetrate to the skin through hair or wool, tolerance of high skin surface temperatures and high residual activity may mean that the most virulent pathogens are not necessarily the most appropriate for commercial application. Here, a simulation model is constructed and used to highlight a range of key features which characterize suitable pathogens for such application. Sensitivity analysis shows that even a relatively low probability of infection following contact between infectious and susceptible individuals may give acceptable control, providing it is counterbalanced by higher survival of both infected and infectious parasite hosts in order to allow the rate of transmission to exceed the threshold required to suppress parasite population growth. The model highlights the need for studies attempting to identify sustainable biocontrol agents to explore the use of pathogens which have a range of the characteristics that contribute to overall pathogenicity, but which are also most compatible with practical application systems.
机译:牲畜节肢动物外寄生虫的管理目前主要依靠使用神经毒性化学物质。但是,人们对耐药性的发展以及操作者和环境污染的担忧,促使人们开始研究控制其替代方法,包括使用生物病原体。寻找合适的病原体通常侧重于确定最强毒性的药物进行应用。但是,诸如病原体通过头发或羊毛渗透到皮肤的能力,对高皮肤表面温度的耐受性和高残留活性等实际问题可能意味着,最强毒的病原体不一定最适合商业应用。在此,构建了一个仿真模型并用于突出显示一系列关键特征,这些特征表征了适合此类应用的病原体。敏感性分析表明,即使在传染性和易感性个体之间接触后,即使是相对较低的感染概率也可以提供可接受的控制,但前提是要通过提高感染率和感染性寄生虫宿主的存活率来抵消,以使传播速率超过所需的阈值抑制寄生虫种群的增长。该模型强调需要进行研究以试图寻找可持续的生物防治剂,以探索病原体的使用,这些病原体具有有助于整体致病性的一系列特征,但也与实际应用系统最兼容。

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