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The impact of spiders and ground beetles on the abundance of insect pests and yields in soybean and vegetable agroecosystems.

机译:蜘蛛和地面甲虫对大豆和蔬菜农业生态系统中的大量害虫和产量的影响。

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摘要

Conserving generalist predators is a component of many integrated pest management programs. However, because such predators prey upon both pests and other enemies of pests, it is difficult to predict the impact of particular generalist predators on pest populations. I performed large-scale, manipulative field experiments to reveal the extent to which spiders and carabid beetles, which are common generalist predators in agroecosystems, limit populations of insect pests in soybeans and vegetable crops.;In 1994 I reduced densities of spiders and carabid beetles in fenced, 7 x 7-m plots of soybeans. Comparing insect numbers and soybean yield in the experimental plots with open control plots provides no evidence that these generalist predators depress herbivorous insects in soybean.;In 1995, as background to performing field experiments in vegetable crops, I surveyed spider populations and measured habitat variables on 23 organic vegetable farms in central Kentucky. Landscape features, vegetable type and mulching technique influenced the distribution of one or more of six common spider families. Among the common spiders, only the sheet-web building Linyphiidae showed no correlation with environmental variables.;I conducted field experiments in 105-M2 mixed-vegetable gardens in 1996 and in 64-M2 gardens of Kennebec potato in 1997. The experiments employed a combination of mulching, fencing, hand-removal and live pitfall trapping to after densities of spiders and carabid beetles. Predation by spiders and carabid beetles reduced densities of squash bugs, Colorado potato beetles and potato leafhoppers. However, the magnitude of the reduction in pest densities varied between years and effects were often marginally significant statistically. When densities of insect pests were reduced, effects on vegetable yield were often absent. The only significant or marginally statistically significant effects were on the size of marketable cucumbers and the yield of Kennebec potatoes in 1996. Predation by spiders and carabids also affected densities of several other predators of insect pests: predaceous damsel bugs, big-eyed bugs and lacewings.;Future studies are needed to quantify further the indirect effects of spiders and carabids on other natural enemies, and to determine threshold pest densities below which spiders and carabids can limit pest populations.
机译:保护多面手捕食者是许多综合害虫管理计划的组成部分。但是,由于这种捕食者同时捕食害虫和害虫的其他敌人,因此很难预测特定的通才捕食者对害虫种群的影响。我进行了大规模的操纵性野外实验,以了解在多大程度上常见于生态系统的蜘蛛和甲虫限制了大豆和蔬菜作物中的害虫数量。1994年,我降低了蜘蛛和甲虫的密度围起来的7 x 7米的大豆地块。将实验区的昆虫数量和大豆产量与开放控制区进行比较,没有证据表明这些通才捕食者会抑制大豆中的草食性昆虫。1995年,作为在蔬菜作物上进行田间试验的背景,我调查了蜘蛛种群并测量了生境变量。肯塔基州中部的23个有机蔬菜农场。景观特征,蔬菜类型和覆盖技术影响了六个常见蜘蛛科中一个或多个的分布。在常见的蜘蛛中,只有片状网眼科的Linyphiidae与环境变量无关。我于1996年在肯尼贝克马铃薯的105-M2混合菜园和1997年在Kennebec马铃薯的64-M2园里进行了实地试验。覆盖,击剑,手动除草和活陷阱的结合,以适应蜘蛛和甲虫的密度。蜘蛛和甲虫的捕食降低了南瓜,科罗拉多马铃薯甲虫和马铃薯叶蝉的密度。但是,害虫密度降低的幅度在几年之间有所不同,其影响在统计学上通常仅略微重要。当降低害虫的密度时,通常对蔬菜产量没有影响。仅有的显着或统计学上显着的影响是对1996年出售的黄瓜的大小和肯尼贝克马铃薯的产量的影响。蜘蛛和甲壳类动物的捕食也影响了其他几种害虫的捕食密度:早熟少女臭虫,大眼虫和草lace 。;需要进行未来的研究,以进一步量化蜘蛛和甲子藻对其他天敌的间接影响,并确定有害生物的临界密度,在此阈值以下,蜘蛛和甲子藻可以限制害虫种群。

著录项

  • 作者

    Tuntibunpakul, Patchanee.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Agriculture Agronomy.;Biology Ecology.;Biology Entomology.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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