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步行行为在步甲科昆虫中:扩散潜力、间歇性和个体变异。

Walking behaviour in the ground beetle, : dispersal potential, intermittency and individual variation.

机构信息

Department of Mathematical Sciences, University of Essex, Colchester, CO4 3SQ, UK.

School of Biological and Marine Sciences, Plymouth University, Plymouth, PL4 8AA.

出版信息

Bull Entomol Res. 2021 Apr;111(2):200-209. doi: 10.1017/S0007485320000565. Epub 2020 Sep 30.

DOI:10.1017/S0007485320000565
PMID:32993822
Abstract

Dispersal is a key ecological process affecting community dynamics and the maintenance of populations. There is increasing awareness of the need to understand individual dispersal potential to better inform population-level dispersal, allowing more accurate models of the spread of invasive and beneficial insects, aiding crop and pest management strategies. Here, fine-scale movements of Poecilus cupreus, an important agricultural carabid predator, were recorded using a locomotion compensator and key movement characteristics were quantified. Net displacement increased more rapidly than predicted by a simple correlated random walk model with near ballistic behaviour observed. Individuals displayed a latent ability to head on a constant bearing for protracted time periods, despite no clear evidence of a population level global orientation bias. Intermittent bouts of movement and non-movement were observed, with both the frequency and duration of bouts of movement varying at the inter- and intra-individual level. Variation in movement behaviour was observed at both the inter- and intra- individual level. Analysis suggests that individuals have the potential to rapidly disperse over a wider area than predicted by simple movement models parametrised at the population level. This highlights the importance of considering the role of individual variation when analysing movement and attempting to predict dispersal distances.

摘要

扩散是影响群落动态和种群维持的关键生态过程。越来越多的人意识到需要了解个体的扩散潜力,以便更好地了解种群水平的扩散,从而能够更准确地预测入侵和有益昆虫的传播,为作物和害虫管理策略提供帮助。在这里,使用运动补偿器记录了重要农业捕食性鞘翅目昆虫 P. cupreus 的细尺度运动,并量化了关键运动特征。净位移的增加速度比简单的相关随机游走模型预测的要快,接近弹道行为。尽管没有明显的群体水平全局定向偏差的证据,但个体表现出持续恒定方向的潜在能力。观察到间歇性的运动和非运动,运动和非运动的频率和持续时间在个体间和个体内都有变化。在个体间和个体内水平都观察到了运动行为的变化。分析表明,个体有潜力比简单的基于种群水平参数化的运动模型预测的更快地在更大的区域内扩散。这凸显了在分析运动和尝试预测扩散距离时考虑个体变异的重要性。

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