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Modelling the impact and control of an infectious disease in a plant nursery with infected plant material inputs

机译:在感染了植物材料的植物苗圃中模拟传染病的影响和控制

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摘要

The ornamental plant trade has been identified as a key introduction pathway for plant pathogens. Establishing effective biosecurity measures to reduce the risk of plant pathogen outbreaks in the live plant trade is therefore important. Management of invasive pathogens has been identified as a weakest link public good, and thus is reliant on the actions of individual private agents. This paper therefore provides an analysis of the impact of the private agents’ biosecurity decisions on pathogen prevention and control within the plant trade. We model the impact that an infectious disease has on a plant nursery under a constant pressure of potentially infected input plant materials, like seeds and saplings, where the spread of the disease reduces the value of mature plants. We explore six scenarios to understand the influence of three key bioeconomic parameters; the disease's basic reproductive number, the loss in value of a mature plant from acquiring an infection and the cost-effectiveness of restriction. The results characterise the disease dynamics within the nursery and explore the trade-offs and synergies between the optimal level of efforts on restriction strategies (actions to prevent buying infected inputs), and on removal of infected plants in the nursery. For diseases that can be easily controlled, restriction and removal are substitutable strategies. In contrast, for highly infectious diseases, restriction and removal are often found to be complementary, provided that restriction is cost-effective and the optimal level of removal is non-zero.
机译:观赏植物贸易已被确定为植物病原体的主要引入途径。因此,建立有效的生物安全措施以减少活植物贸易中植物病原体暴发的风险很重要。入侵性病原体的管理已被确定为公共物品中最薄弱的环节,因此依赖于个体私人行为者的行动。因此,本文提供了对私营代理商的生物安全决策对植物贸易中病原体预防和控制的影响的分析。我们对传染病对植物苗圃的影响进行建模,这种影响是在不断受到潜在感染的输入植物材料(例如种子和幼树)的恒定压力下,疾病传播会降低成熟植物的价值。我们探索六个场景以了解三个关键生物经济参数的影响;该病的基本生殖数量,成熟植物因感染而损失的价值以及限制的成本效益。结果表征了苗圃内的疾病动态,并探索了在限制策略(防止购买受感染的投入物的措施)与清除苗圃中的受感染植物的最佳努力水平之间的权衡与协同作用。对于易于控制的疾病,限制和清除是可替代的策略。相反,对于高度传染性疾病,限制和清除通常是互补的,只要限制具有成本效益且最佳清除水平不为零即可。

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