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Modeling the effects of Aedes aegypti’s larval environment on adult body mass at emergence

机译:建模AEDYPTI幼虫环境对成年体重造型的影响

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Mosquitoes vector harmful pathogens that infect millions of people every year, and developing approaches to effectively control mosquitoes is a topic of great interest. However, the success of many control measures is highly dependent upon ecological, physiological, and life history traits of mosquito species. The behavior of mosquitoes and their potential to vector pathogens can also be impacted by these traits. One trait of interest is mosquito body mass, which depends upon many factors associated with the environment in which juvenile mosquitoes develop. Our experiments examined the impact of larval density on the body mass of Aedes aegypti mosquitoes, which are important vectors of dengue, Zika, yellow fever, and other pathogens. To investigate the interactions between the larval environment and mosquito body mass, we built a discrete time mathematical model that incorporates body mass, larval density, and food availability and fit the model to our experimental data. We considered three categories of model complexity informed by data, and selected the best model within each category using Akaike’s Information Criterion. We found that the larval environment is an important determinant of the body mass of mosquitoes upon emergence. Furthermore, we found that larval density has greater impact on body mass of adults at emergence than on development time, and that inclusion of density dependence in the survival of female aquatic stages in models is important. We discuss the implications of our results for the control of Aedes mosquitoes and on their potential to spread disease.
机译:蚊虫载体每年感染数百万人的有害病原体,以及有效控制蚊子的发展方法是一个极其兴趣的话题。然而,许多控制措施的成功高度依赖蚊虫物种的生态,生理和生命历史特征。蚊子的行为及其对载体病原体的潜力也可能受这些特征的影响。一个兴趣的特点是蚊虫体重,这取决于与少年蚊虫发展的环境相关的许多因素。我们的实验检测了幼虫密度对AEDESAGYPTI蚊子体重的影响,这是登革热,ZIKA,黄热病等病原体的重要载体。为了研究幼虫环境与蚊子体重之间的相互作用,我们建立了一种离散时间数学模型,该模型包含体重,幼虫密度和食品可用性,并将模型适合我们的实验数据。我们考虑了通过数据通知的三类模型复杂性,并使用Akaike的信息标准选择了每个类别中的最佳模型。我们发现幼虫环境是在出现时蚊子体重的重要决定因素。此外,我们发现幼虫密度在出现的情况下对体重的影响大于开发时间,并且在模型中女性水生阶段的存活中包含密度依赖性是重要的。我们讨论了我们对艾德斯蚊子的控制和潜力传播疾病的影响。

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