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Ecological consequences of genetic variation in foraging behaviors of a predatory mite.

机译:遗传变异对捕食性螨的觅食行为的生态影响。

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摘要

Foraging traits such as prey consumption rate and the efficiency with which predators convert their prey into offspring are important determinants of local predator-prey dynamics. However, in environments with patchy prey distribution, predator dispersal and aggregation in response to prey-induced volatile cues becomes more critical. My dissertation addressed predator-prey population dynamics in response to variation in four foraging traits in the predatory mite, Phytoseiulus persimilis (Acari: Phytoseiidae): consumption rate, conversion efficiency, dispersal, and olfactory response related to prey.;The dispersal response and olfactory sensitivity in predatory mites is modified by prey-related cues. For example, the dispersal response increased with decreasing prey density in a patch and increasing prey-related volatiles from outside the prey patch. The olfactory response of predatory mites also increased with increasing numbers of prey per plant or with the length of time a plant was infested by prey. These results formed the basis for development of bioassays used to examine genetic variation in dispersal and olfactory response of predatory mites.;Through artificial selection I documented additive genetic variation in all four traits. After relaxation of selection, high-level phenotypes were stable compared to their low counterparts. There were significant genetic correlations between some of the foraging traits. However, there were no correlations between foraging traits and life-history traits. The existence of genetic variation and covariation among the foraging traits suggests that predatory mites must be able to adopt different foraging strategies in the evolution of prey-finding in a tritrophic system.;High consumption, high conversion efficiency and high dispersal response phenotypes interacted differently with prey in a spatially complex landscape. All foraging traits were comparable in terms of predator-prey densities and plant damage; but they were lower than the unselected control. Spatial association and correlation analysis showed that all foraging traits were positively associated with prey; but the strongest association was observed for the high conversion efficiency and dispersal lines. The variability in foraging behaviors of the predatory mite affects its ability to locate patchily distributed prey, thereby influencing foraging efficiency and population dynamics. This research provides new information about the critical link between predator foraging and population dynamics relevant to biological control.
机译:诸如猎物消耗率和捕食者将猎物转化为后代的效率之类的觅食特征是当地捕食者-猎物动态的重要决定因素。但是,在猎物分布不规则的环境中,响应于猎物引起的挥发性线索,捕食者的扩散和聚集变得更加关键。我的论文针对捕食性螨(Phytoseiulus persimilis(Acari:Phytoseiidae))的四种觅食性状的变化对捕食者-猎物种群动态的响应:消费率,转化效率,与猎物有关的扩散和嗅觉反应;分散反应和嗅觉。掠食性螨的敏感性会因与猎物有关的提示而改变。例如,扩散响应随贴片中猎物密度的降低和来自猎物贴片外部与猎物相关的挥发物的增加而增加。捕食性螨的嗅觉响应也随着每棵植物中猎物数量的增加或植物被猎物侵扰的时间长度而增加。这些结果为开发用于检测捕食性螨的扩散和嗅觉反应的遗传变异的生物测定法奠定了基础。通过人工选择,我记录了所有四个性状的加性遗传变异。放松选择后,高水平的表型与低水平的表型相比是稳定的。一些觅食性状之间存在显着的遗传相关性。但是,觅食性状和生活史性状之间没有相关性。觅食性状之间存在遗传变异和协变,这表明掠食性螨在三营养系统的食饵寻找过程中必须能够采用不同的觅食策略。高消耗,高转化效率和高分散反应表型与不同养分的相互作用在空间复杂的景观中捕食。就捕食者-猎物的密度和植物损害而言,所有觅食性状均具有可比性。但它们低于未选择的对照。空间关联和相关性分析表明,所有觅食性状均与猎物成正相关。但观察到最强的关联是高转化效率和分散线。捕食性螨的觅食行为的可变性会影响其定位零星分布的猎物的能力,从而影响觅食效率和种群动态。这项研究提供了有关捕食者觅食和与生物控制有关的种群动态之间的关键联系的新信息。

著录项

  • 作者

    Nachappa, Punya.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Biology Entomology.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;
  • 关键词

  • 入库时间 2022-08-17 11:38:49

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