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首页> 外文期刊>Journal of Economic Entomology >Quantifying Conservation Biological Control for Management of Bemisia tabaci (Hemiptera: Aleyrodidae) in Cotton
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Quantifying Conservation Biological Control for Management of Bemisia tabaci (Hemiptera: Aleyrodidae) in Cotton

机译:量化棉花菌塔曲(Hemiptera:Aleyrodidae)管理的保护生物学控制

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摘要

Conservation biological control can be an effective tactic for minimizing insect-induced damage to agricultural production. In the Arizona cotton system, a suite of generalist arthropod predators provides critical regulation of Bemisia tabaci Gennadius (MEAM1) (Hemiptera: Aleyrodidae) and other pests. Arthropod predator and B. tabaci populations were manipulated with a range of broad-spectrum and selective insecticide exclusions to vary predator to prey interactions in a 2-yr field study. Predator to prey ratios associated with B. tabaci densities near the existing action threshold were estimated for six predator species found to be negatively associated with either adult and/or large nymphs of B. tabaci [Misumenops celer (Hentz) (Araneae: Thomisidae), Drapetis nr divergens (Diptera: Empididae), Geocoris pallens StAl (Hemiptera: Geocoridae), Orius tristicolor (White) (Hemiptera: Anthocoridae), Chrysoperla carnea s.l. (Neuroptera: Chrysopidae), and Collops spp. (Coleoptera: Melyridae)] with the first three most consistently associated with declining B. tabaci densities. Ratios ranged from 1 M. celer per 100 sweeps to 1 B. tabaci adult per leaf to 44 D. nr. divergens per 100 sweeps to 1 large nymph per leaf disk. These ratios represent biological control informed thresholds that might serve as simple-to-use decision tool for reducing risk in the current B. tabaci integrated pest management strategy. The identification of key predators within the large, flexible food web of the cotton agro-ecosystem and estimation of predator to B. tabaci ratios clarifies the role of key predators in B. tabaci suppression, yielding potential decision-making advantages that could contribute to further improving economic and environmental sustainability of insect management in the cotton system.
机译:保护生物控制可以是最大限度地减少昆虫引起的农业生产损伤的有效策略。在亚利桑那州棉花系统中,一套通用节肢动物捕食者提供了Bemisia Tabaci Gennadius(Meam1)(Hemiptera:Aleyrodidae)和其他害虫的临界调节。蛛网捕食者和B. Tabaci种群被操纵于一系列广谱和选择性杀虫剂排除,以改变捕食者在2年的田间研究中的捕食性相互作用。捕食与B. Tabaci密度附近现有作用阈值的捕食性捕获剂的捕食者估计六种捕食者物种与B. tabaci的成人和/或大若虫(Hentumops Celer(Hentz)(Araneae:Thomisidae)负相关, Drapetis NR Divergens(Diptera:Empididae),Geocoris Pallens Stal(Hemiptera:Geocoridae),orius tristificolor(白色)(Hemiptera:Anthocoridae),Chrysoperla Carnea SL (Neuroptera:Chrysopidae)和拼接SPP。 (鞘翅目源:MELYRIDAE)]前三个最始终如一地与B. Tabaci密度下降相关。每100次冬季冠军的比例从1米旁扫到1 b. tabaci成人每叶至44 d.nr。每100次偏离每叶片1个大型若虫。这些比例代表了生物控制的明智阈值,可作为易于使用的决策工具,以降低当前B. Tabaci综合害虫管理策略的风险。鉴定棉花农业生态系统的大,柔性食品网内的关键捕食者及捕食者对B. tabaci比率的估算阐明了关键捕食者在B. tabaci抑制中的作用,产生可能导致进一步的潜在决策优势改善棉花系统昆虫管理的经济和环境可持续性。

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