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Mosquito population regulation and larval source management in heterogeneous environments.

机译:异构环境中的蚊子种群调节和幼虫源管理。

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摘要

An important question for mosquito population dynamics, mosquito-borne pathogen transmission and vector control is how mosquito populations are regulated. Here we develop simple models with heterogeneity in egg laying patterns and in the responses of larval populations to crowding in aquatic habitats. We use the models to evaluate how such heterogeneity affects mosquito population regulation and the effects of larval source management (LSM). We revisit the notion of a carrying capacity and show how heterogeneity changes our understanding of density dependence and the outcome of LSM. Crowding in and productivity of aquatic habitats is highly uneven unless egg-laying distributions are fine-tuned to match the distribution of habitats’ carrying capacities. LSM reduces mosquito population density linearly with coverage if adult mosquitoes avoid laying eggs in treated habitats, but quadratically if eggs are laid in treated habitats and the effort is therefore wasted (i.e., treating 50% of habitat reduces mosquito density by approximately 75%). Unsurprisingly, targeting (i.e. treating a subset of the most productive pools) gives much larger reductions for similar coverage, but with poor targeting, increasing coverage could increase adult mosquito population densities if eggs are laid in higher capacity habitats. Our analysis suggests that, in some contexts, LSM models that accounts for heterogeneity in production of adult mosquitoes provide theoretical support for pursuing mosquito-borne disease prevention through strategic and repeated application of modern larvicides.
机译:蚊子种群动态,蚊子传播的病原体传播和媒介控制的一个重要问题是如何调节蚊子种群。在这里,我们开发了简单的模型,在产卵模式和幼虫种群对水生生境拥挤的反应中具有异质性。我们使用模型来评估这种异质性如何影响蚊子种群调控以及幼虫源管理(LSM)的影响。我们重新审视了承载力的概念,并说明了异质性如何改变我们对密度依赖性和LSM结果的理解。除非对产卵分布进行微调以使其与生境的承载能力相匹配,否则水生生境的拥挤和生产力高度不平衡。如果成年蚊子避免在经过处理的生境中产卵,则LSM会通过覆盖率线性降低蚊虫的密度,但是如果在经过处理的生境中产卵,则LSM会二次减少蚊子的密度,因此浪费了精力(即处理50%的生境会使蚊子密度降低约75%)。毫不奇怪,针对类似的覆盖率,针对性目标(即处理一部分最高产池)会产生更大的减少量,但针对性较差,如果将卵产于较高容量的栖息地中,覆盖率的提高可能会增加成蚊的种群密度。我们的分析表明,在某些情况下,考虑到成年蚊子生产过程中的异质性的LSM模型可以通过战略性和重复应用现代幼虫来为预防蚊子传播的疾病提供理论支持。

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