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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Slowing the evolution of insecticide resistance in mosquitoes: A mathematical model
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Slowing the evolution of insecticide resistance in mosquitoes: A mathematical model

机译:减慢蚊子对杀虫剂的抗性演变:一个数学模型

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摘要

A big problem in malaria control is the rapidity with which mosquitoes can develop resistance to insecticides. The possibility of creating evolution-proof insecticides is therefore of considerable interest. Biologists have suggested that effective malaria control, with only weak selection for insecticide resistance, could be achieved if insecticides target only old mosquitoes that have already laid most of their eggs. The strategy aims to exploit the fact that most malarial mosquitoes do not live long enough to transmit the disease.We derive, analyse and compare two mathematical models, one for an insecticide that kills on exposure, and the other for an insecticide that targets only older mosquitoes. Both models predict that insecticide-resistant mosquitoes will become dominant over time but, very importantly, this occurs on a very much slower time scale when the insecticide only affects older mosquitoes. We present analytical results on linear and global stability of the nontrivial equilibrium in which only the resistant mosquito strain is present, together with a theorem comparing the rates of convergence for the two models. Numerical simulations show that the effect of targeting only old mosquitoes on the evolution of resistance is dramatic.
机译:疟疾控制中的一个大问题是蚊子对杀虫剂产生抗药性的快速性。因此,产生防进化杀虫剂的可能性引起了极大的兴趣。生物学家建议,如果仅将杀虫剂的目标放在已经产下大部分卵的老蚊子上,就可以实现有效的疟疾控制,而对杀虫剂的抗性只有很弱的选择。该策略旨在利用大多数疟疾蚊子的寿命不足以传播疾病的事实,我们推导,分析和比较了两种数学模型,一种是杀虫剂在暴露时会杀死,另一种是针对年龄较大的杀虫剂。蚊子。两种模型都预测,随着时间的推移,抗杀虫剂的蚊子将占主导地位,但是,非常重要的是,当杀虫剂仅影响年长的蚊子时,发生的时间要慢得多。我们提供了关于非平凡平衡的线性和整体稳定性的分析结果,其中仅存在抗蚊子应变,同时还给出了比较两个模型的收敛速度的定理。数值模拟表明,仅针对老蚊子的抗药性影响是巨大的。

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