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Does prey encounter and nutrient content affect prey selection in wolf spiders inhabiting Bt cotton fields?

机译:居住在Bt棉田中的狼蛛的猎物接触和养分含量是否会影响猎物的选择?

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摘要

Wolf spiders are abundant and voracious predators at the soil-plant interface in cotton crops. Among other prey, they attack late-instar larvae of the cotton bollworm Helicoverpa spp., an economically important pest. Consequently, wolf spiders in transgenic Bt cotton could provide significant biological control of Bt-resistant Helicoverpa larvae that descend to the soil to pupate. The predator-prey interactions between wolf spiders and Helicoverpa could, however, be constrained by the presence of alternative prey and intraguild predators. This study used laboratory enclosures to analyse the effect of alternative prey on predatory selection of the wolf spider Tasmanicosa leuckartii Thorell. The prey included another wolf spider Hogna crispipes Koch (potential intraguild predator), the ground cricket Teleogryllus commodus Walker (minor pest), and Helicoverpa armigera larvae (major pest). We tested if encounter rates, prey vulnerability, and prey nutritional content influenced the likelihood that a prey was attacked. In three-way food webs, Tasmanicosa encountered and attacked Teleogryllus and Helicoverpa in similar frequencies. However, in the presence of a competing intraguild predator and potential prey (Hogna) in a four-way food web, Tasmanicosa did not always attack Teleogryllus at first encounter, but still attacked Helicoverpa at each encounter. Helicoverpa (protein-poor) and Hogna (protein-rich) were consumed by Tasmanicosa in similar proportions, suggesting that Tasmanicosa might benefit from nutrient balance as an outcome of diverse prey in this food web. As Teleogryllus (protein rich) escapes quicker than Helicoverpa and Hogna, Hogna may be an easier protein-rich option than Teleogryllus. Field surveys showed that while Teleogryllus was the most common prey, wolf spiders feed on diverse insect taxa, as well as other spiders. That Tasmanicosa readily attacked Helicoverpa larvae in the presence of alternative prey is an encouraging result that supports the potential of Tasmanicosa predation to assist in the control of Bt-resistant Helicoverpa larvae and thereby inhibit the proliferation and spread of resistance.
机译:狼蛛在棉花作物的土壤-植物界面处是丰富而繁琐的捕食者。在其他猎物中,它们攻击棉铃虫Helicoverpa spp。的后龄幼虫,这是一种重要的经济害虫。因此,转基因Bt棉花中的狼蛛可以提供对Bt耐药的Helicoverpa幼虫的重要生物学控制,该幼虫下降到土壤化to。但是,狼蛛与Helicoverpa之间的食肉动物与猎物的相互作用可能会受到其他食肉动物和行会内食肉动物的存在的限制。这项研究使用实验室围栏来分析替代猎物对狼蛛塔斯马尼科萨·勒克卡蒂·托雷尔(Tasmanicosa leuckartii Thorell)掠食性选择的影响。猎物包括另一只狼蛛Hogna crispipes Koch(潜在的行会内捕食者),the(Teleogryllus commodus Walker)(次要害虫)和Helicoverpa armigera幼虫(主要害虫)。我们测试了遭遇率,猎物脆弱性和猎物营养成分是否会影响猎物受到攻击的可能性。在三通食物网中,塔斯马尼科萨斯以相似的频率遭遇并袭击了剑龙和Helicoverpa。但是,在四向食物网中存在竞争中的公会内捕食者和潜在猎物(Hogna)时,塔斯马尼科萨并不总是在初次见面时会攻击Teleogryllus,但在每次相遇时仍会对Helicoverpa进行攻击。塔斯马尼考萨(em)食用Helicoverpa(蛋白质贫乏)和Hogna(富含蛋白质)的比例相似,这表明塔斯马尼卡萨姆(ems)可能会因养分平衡而受益于营养平衡这个食物网。由于 Teleogryllus (富含蛋白质的)比 Helicoverpa Hogna 的逃逸速度更快,因此 Hogna 可能是一种更容易的富含蛋白质的选择比 Teleogryllus 。野外调查显示,虽然 Teleogryllus 是最常见的猎物,但狼蛛和其他蜘蛛都以不同的昆虫类群为食。 Tasmanicosa 在另类猎物的存在下很容易地袭击了 Helicoverpa 幼虫,这是一个令人鼓舞的结果,支持了 Tasmanicosa 捕食有助于控制疟疾的潜力。抗Bt的 Helicoverpa 幼虫,从而抑制了抗性的扩散和传播。

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