首页> 外文学位 >Genetic improvement of a biological control agent: Evolution of pesticide resistance in Aphytis melinus DeBach (Hymenoptera: Aphelinidae) through natural and artificial selection.
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Genetic improvement of a biological control agent: Evolution of pesticide resistance in Aphytis melinus DeBach (Hymenoptera: Aphelinidae) through natural and artificial selection.

机译:生物防治剂的遗传改良:通过自然选择和人工选择,在Aphytis melinus DeBach(膜翅目:Aphelinidae)中产生了抗药性。

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摘要

Thirteen populations of Aphytis melinus DeBach, a key biological control agent of California red scale, Aonidiella aurantii (Maskell), were collected from the citrus-growing regions of California. Each population's history of exposure to insecticides was estimated by determining history of insecticide use at both local (in-grove) and regional (county-wide) geographical scales. Concentration/mortality regressions for five insecticides widely used in citrus (carbaryl, chlorpyrifos, dimethoate, malathion, and methidathion) were estimated for the populations. LC50's were correlated with both in-grove and county-wide pesticide use histories; patterns of variability were best explained by results of a multiple regression analysis that combined the influences of these two histories. Roles of food limitation, migration, and host distribution in determining patterns and rates of evolution of pesticide resistance in arthropod biological control agents are discussed.; Sublethal effects of citrus insecticides on A. melinus were investigated. Longevity, daily rate of progeny production per female, and size and sex ratio of offspring were measured for parasitoids exposed to rates near the LC50's of carbaryl, chlorpyrifos, dimethoate, malathion, and methidathion. Survivors of the carbaryl exposure exhibited no significant sublethal effects. Each of the organophosphorous materials reduced longevity by 73-85% and temporarily depressed progeny production.; Populations of A. melinus were artificially selected for increased tolerance to the same five insecticides. Selection produced gradual, small to moderate increases in resistance, accompanied in three of 12 selected lines with apparent decreases in genetic variation for pesticide tolerance.; Bioassay techniques using one or two treated leaf surfaces for assessing toxicity of field-weathered pesticide residues were used to determine the survival of the carbaryl resistant strain on field rates of carbaryl. The two-leaf bioassays of carbaryl residues revealed that the carbaryl resistant strain exhibited {dollar}>{dollar}50% survival as early as 18 days post-treatment, while the base colony continued to suffer {dollar}>{dollar}86% mortality on 75-day-old residues, the oldest tested. Because larval A. melinus are shielded from insecticides by the bodies of their scale insect hosts, this selected increase in carbaryl tolerance of adults may enable A. melinus to persist in carbaryl-treated groves. (Abstract shortened with permission of author.)
机译:从加利福尼亚州的柑橘生长地区收集了13种种群的Aphytis melinus DeBach,它是加利福尼亚红色鳞片的重要生物防治剂,Aonidiella aurantii(Maskell)。通过确定本地(林内)和区域(县级)地理范围内的杀虫剂使用历史,可以估算每个人口的杀虫剂接触历史。估计了五种广泛用于柑橘的杀虫剂(西维因,毒死rif,乐果,马拉硫磷和甲硫磷)的浓度/死亡率回归。 LC50与林内和全县的农药使用历史相关。多元回归分析的结果最好地解释了变异性的模式,该分析结合了这两种历史的影响。讨论了食物限制,迁移和寄主分布在确定节肢动物生物防治剂中农药抗性的模式和速率方面的作用。研究了柑橘类杀虫剂对A. melinus的亚致死作用。对于暴露于西维因,毒死rif,乐果,马拉硫磷和甲硫磷的LC50附近的寄生虫,测定了寿命,每位女性的每日子代产量以及后代的大小和性别比。西维因暴露的幸存者没有表现出明显的亚致死作用。每种有机磷材料将寿命降低了73-85%,并暂时降低了子代的产量。为了增加对相同的五种杀虫剂的耐受性,人为地选择了黑曲霉种群。选择产生了逐渐的抗性,从小到中度增加,并伴随着12个选择品系中的3个品系,其对农药耐受性的遗传变异明显减少。使用一种或两种处理过的叶片表面评估野外风化农药残留毒性的生物测定技术,确定了抗甲萘威的菌株对甲萘威的存活率。西维因残基的两叶生物测定法显示,耐西维因的菌株最早在治疗后18天就显示出50%的存活率,而基础菌落继续遭受{美元}> {美元} 86%的存活率。测试最久的75天残渣的死亡率。由于幼虫A. melinus被其规模昆虫寄主的身体遮挡了杀虫剂,因此成虫对石蒜耐性的这种选择提高可能使A. melinus能够在经石蜡处理的树林中得以维持。 (摘要经作者许可缩短。)

著录项

  • 作者

    Rosenheim, Jay Aaron.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Biology Entomology.; Biology Genetics.; Biology Ecology.
  • 学位 Ph.D.
  • 年度 1987
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;遗传学;生态学(生物生态学);
  • 关键词

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