家庭环境中蜱虫的生物控制:模拟昆虫病原真菌对东海岸热在牛中传播的潜在影响。

IF 3.1 2区 医学 Q2 INFECTIOUS DISEASES Ticks and Tick-borne Diseases Pub Date : 2025-01-01 DOI:10.1016/j.ttbdis.2024.102435
Joseph Wang'ang'a Oundo , Nienke Hartemink , Mart C.M. de Jong , Constantianus J.M. Koenraadt , Shewit Kalayou , Daniel Masiga , Quirine ten Bosch
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引用次数: 0

摘要

利用昆虫病原真菌(EPF)对蜱进行生物防治,是控制蜱传病原体的化学杀螨剂的理想替代品。Metarhizium anisopliae 分离物 ICIPE 7 是这些 EPF 中的一种,在实验室和野外环境中已被证明对多种蜱虫有效。然而,我们目前对 EPFs 如何影响传播的定量了解甚少。我们建立了一个蜱-宿主-病原体相互作用的确定性模型,以探索 EPF 对 Rhipicephalus appendiculatus 蜱的影响如何影响东海岸热(ECF)在牛群中的传播动态。我们利用 Tickoff® 生物农药(M. anisopliae ICIPE 7 的新型制剂)和相关 EPF 的实验数据,对 EPF 对蜱虫动态的多方面影响进行了参数化。评估了 EPF 对一系列产品和实施策略的流行病学影响。模型结果表明,在所探讨的产品类型中,EPF 的大部分流行病学影响是通过延迟死亡效应产生的。EPF 引发的死亡不仅可以减少副疟原虫向牛群(包括已处理和未处理的牛群)的传播,还可以降低蜱虫与宿主的比率,从而减少牛群与蜱虫的接触。EPF 对蜱虫繁殖能力和吞食的影响可以忽略不计。要减少蜱虫种群数量并对牛群产生有意义的流行病学影响,需要高水平的种群覆盖率和治疗频率。此外,通过对 EPF 配方进行技术改进,增加真菌分生孢子在牛皮肤上的存活时间,再加上可观的种群覆盖水平、治疗频率和高效的喷洒技术,可以大大减少急性感染。我们的模型分析深入揭示了 EPF 在种群水平上使用时可能产生的影响,并为进一步研究和开发这种生物蜱虫控制工具提供了支持。
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Biological control of ticks in domestic environments: Modeling the potential impact of entomopathogenic fungi on the transmission of East Coast fever in cattle
Biological control of ticks using entomopathogenic fungi (EPF) is a highly desired alternative to chemical acaricides for the control of tick-borne pathogens. For Metarhizium anisopliae isolate ICIPE 7, one of these EPFs, efficacy against multiple tick species has been demonstrated in laboratory and field settings. However, we currently have little quantitative understanding of how EPFs can impact transmission. We developed a deterministic model of tick–host–pathogen interactions to explore how the effects of EPF on Rhipicephalus appendiculatus ticks may impact the transmission dynamics of East Coast fever (ECF) in cattle populations. We parameterized the multi-faceted effects of EPFs on tick dynamics using experimental data on Tickoff® biopesticide (a novel formulation of M. anisopliae ICIPE 7) and related EPFs. The epidemiological impact of EPF was evaluated across a range of product profiles and implementation strategies. Model results indicate that, for the explored product profiles, EPF derives most of its epidemiological impact through the delayed mortality effect. This EPF-induced mortality could not only reduce the onward Theileria parva transmission to cattle (both treated and untreated) but could also cause a reduction in the tick-to-host ratio and thus cattle exposure to ticks. The effects of EPF on reproduction fitness and engorgement of ticks elicit negligible impact. High levels of population coverage and treatment frequency are needed to reduce the tick population size and reach meaningful epidemiological impact in cattle populations. Additionally, increasing the persistence time of fungal conidia on cattle skin – through technological improvements to the EPF formulation–can substantially reduce acute infections when combined with appreciable population coverage levels, treatment frequency, and efficient spraying techniques. Our model analysis provides insights into the potential impact of EPF when deployed at a population level, and lends support to further research and development of this biological tick control tool.
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来源期刊
Ticks and Tick-borne Diseases
Ticks and Tick-borne Diseases INFECTIOUS DISEASES-MICROBIOLOGY
CiteScore
6.90
自引率
12.50%
发文量
185
审稿时长
6-12 weeks
期刊介绍: Ticks and Tick-borne Diseases is an international, peer-reviewed scientific journal. It publishes original research papers, short communications, state-of-the-art mini-reviews, letters to the editor, clinical-case studies, announcements of pertinent international meetings, and editorials. The journal covers a broad spectrum and brings together various disciplines, for example, zoology, microbiology, molecular biology, genetics, mathematical modelling, veterinary and human medicine. Multidisciplinary approaches and the use of conventional and novel methods/methodologies (in the field and in the laboratory) are crucial for deeper understanding of the natural processes and human behaviour/activities that result in human or animal diseases and in economic effects of ticks and tick-borne pathogens. Such understanding is essential for management of tick populations and tick-borne diseases in an effective and environmentally acceptable manner.
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