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Spatial distribution, dispersal behavior and population structure of Tribolium castaneum Herbst (Coleoptera: Tenebrionidae).

机译:Tribolium castaneum Herbst(鞘翅目:Tenebrionidae)的空间分布,扩散行为和种群结构。

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摘要

Knowledge of factors influencing the establishment, persistence and distribution of stored-product pests aids the development of effective Integrated Pest Management (IPM) programs in food storage and processing facilities. This research focused primarily on Tribolium castaneum, which is one of the most important pests of mills. Populations of T. castaneum from different food facilities can potentially be interconnected by either their own dispersal behavior or by human transportation. Population genetic structure analysis based on microsatellites and other insertion-deletion polymorphisms ("indels") showed that populations from different mills around the US are genetically distinct from each other, but the level of differentiation was not correlated with the geographic distance. A potential source of insect infestation within a food facility is spillage that accumulates outside or movement from bulk storage facilities on site. Results from three facilities showed that most stored-product species were captured both inside and outside buildings, but T. castaneum was rarely captured outside of the facilities. Spatial distribution of all species outside was associated with the proximity of buildings, not necessarily with areas with accumulated spillage. T. castaneum populations inside facilities are potentially exposed to frequent genetic bottlenecks resulting from structural fumigations. Changes in allele frequencies through time, based on the analysis of microsatellites and other indels in individuals collected in a mill, confirmed bottleneck effects. To understand how spatial distribution of T. castaneum within a mill could be influenced by environmental and physical factors, a range of variables were measured at each trap location. There was significant variation among trap locations regarding beetle captures and the variables measured, but increase in beetle captures correlated only with increase in temperature and spillage production. Tribolium castaneum response to visual cues could influence attraction to pheromone and kairomone olfactory cues used in traps. Results of laboratory experiments showed that adults respond to tall narrow black shapes and placing traps in front of these shapes can increase captures. This research provides new insights into factors influencing the spatial distribution of T. castaneum and could help in improving monitoring programs for this important pest of the food industry.
机译:对影响储藏产品有害生物的形成,持久性和分布的因素的了解有助于发展食品存储和加工设施中有效的病虫害综合防治(IPM)计划。这项研究主要集中在蓖麻毒Tri(Tribolium castaneum)上,后者是工厂最重要的害虫之一。来自不同食品设施的锥栗的种群可能通过其自身的传播行为或通过人类运输而相互联系。基于微卫星和其他插入缺失多态性(“ indels”)的种群遗传结构分析显示,来自美国各地不同工厂的种群在遗传上彼此不同,但分化水平与地理距离无关。食品设施内的昆虫侵扰的潜在来源是溢出物,这些溢出物聚集在现场或从现场的散装存储设施移出。来自三个设施的结果表明,大多数存储产品种类都在建筑物内和室外被捕获,而锥栗木很少在设施外被捕获。外部所有物种的空间分布与建筑物的接近程度有关,而不一定与溢出物累积的地区有关。设施内的锥栗(T. castaneum)种群可能会因结构性熏蒸而导致频繁的遗传瓶颈。根据对工厂收集的个体中的微卫星和其他indel进行分析,等位基因频率随时间的变化证实了瓶颈效应。为了了解工厂内锥栗的空间分布如何受到环境和物理因素的影响,在每个捕集阱位置都测量了一系列变量。在陷阱位置之间,关于甲虫捕获和测得的变量存在显着差异,但是甲虫捕获的增加仅与温度和溢出物产量的增加相关。 bol虫对视觉线索的反应可能会影响诱捕器中所用信息​​素和海洛酮嗅觉线索的吸引力。实验室实验的结果表明,成年人对细长的黑色形状有反应,在这些形状前面放置陷阱可以增加捕获量。这项研究为影响锥栗的空间分布的因素提供了新的见解,并可能有助于改善对食品工业这一重要害虫的监测计划。

著录项

  • 作者

    Semeao, Altair Arlindo.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Agriculture Agronomy.;Biology Entomology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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