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Modelling pheromone anemotaxis for biosecurity surveillance: Moth movement patterns reveal a downwind component of anemotaxis

机译:为生物安全性监视建模信息素泄血:飞蛾的运动模式揭示了泄血的顺风成分

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Insect pheromone traps are becoming an increasingly important tool in biosecurity and pest surveillance, alerting managers to the presence of unwanted organisms. To expand the role of these traps beyond their present sentinel role, it is necessary to develop reliable operational models of local insect dispersal. Following the detection of an insect incursion using a pheromone trap, such models could simulate the dispersal of the insect from its emergence site to the point of detection, enabling biosecurity managers to estimate the most likely proximal source of the incursion. An individual-based moth movement model was developed to simulate observed patterns of moth movement in response to the presence or absence of a pheromone. Using parameters derived from a genetic algorithm, it was possible to fit a model based on the three behavioural components (upwind, upwind with zigzags and casting) described in insect anemotaxis theory to a subset of observed movement patterns (0-135° to the wind), but not to the whole spectrum of movement patterns. It appears that current insect anemotaxis theory is missing a downwind flight component. Whilst the frequency of downwind movements is small; their ground speed could lead to significant downwind displacement, having a disproportionately strong influence on a moth movement model, and hence projections of the likely source or target locations.
机译:信息素诱捕器正在成为生物安全和害虫监测中越来越重要的工具,提醒管理人员注意有害生物的存在。为了将这些陷阱的作用扩展到目前的前哨作用之外,有必要开发可靠的局部昆虫扩散操作模型。在使用信息素诱捕器检测到昆虫入侵之后,此类模型可以模拟昆虫从其出现部位到检测点的扩散,从而使生物安全管理人员能够估计最可能的近端入侵源。建立了一个基于个体的蛾运动模型,以模拟观察到的响应信息素存在或不存在的蛾运动模式。使用从遗传算法得出的参数,可以根据昆虫驱虫理论中描述的三个行为成分(迎风,上风用之字形和抛物)将模型拟合到观察到的运动模式的子集(与风成0-135度) ),但不能涵盖整个运动模式。似乎当前的昆虫止血理论缺少顺风飞行成分。顺风运动的频率很小;它们的地面速度可能导致显着的顺风位移,对飞蛾运动模型产生不成比例的强烈影响,因此可能是源或目标位置的预测。

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