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A population approach for integrating agrochemicals and biological control agents in broccoli.

机译:在西兰花中整合农用化学品和生物防治剂的种群方法。

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摘要

Through a series of field and laboratory experiments, I explored ways of reducing reliance upon insecticide spraying while fostering control by natural enemies using a broccoli-aphid-natural enemy complex. Demographic statistics developed for the aphid parasitoid, Diaeretiella rapae (McIntosh) and two hosts, the cabbage aphid, Brevicoryne brassicae (L.), and the green peach aphid, Myzus persicae (Sulzer), indicated that M. persicae was a better host for D. rapae. Parasitoids reared on M. persicae had higher intrinsic (rm) and finite rates of increase and shorter generation and doubling times than when reared on B. brassicae.; Laboratory exposure of D. rapae adults to the selective insecticide pymetrozine at the recommended field rate (0.2128 a.i./ha) increased rm 11% while exposure to the adjuvant Sylgard 309 reduced rm 18%. When combined, the chemicals acted synergistically, reducing rm 39%. The mummy stage afforded some protection to the parasitoid as exposure to both chemicals resulted in a 13% reduction in rm.; D. rapae alone, Coccinella septempunctata L. alone, and a combination of both organisms (ratio of 1:50 predator/parasitoid:aphid) in the laboratory led to a 38, 58, and 66% reduction in the level of aphid infestation, respectively. Pymetrozine alone at 1/64 field rate (0.0038 a.i./ha) caused an 85% reduction and the highest reduction (98%) was obtained when the low dose of pymetrozine was combined with both natural enemies. In caged field experiments, C. septempunctata alone in a ratio of 1:50 aphids led to a 43% reduction in the level of aphid infestation. D. rapae alone and the two natural enemies together did not reduce the aphid infestation. Pymetrozine [½ field rate (0.106g a.i./ha)] led to a 99.8% reduction in aphid numbers and was too effective for the potential additive reduction of aphids by biological control agents to be evident.; Release of C. septempunctata at 1:40, 1:20 and 1:10 C. septempunctata:aphid ratios in the field led to a 49, 79, and 89% reduction in the level of aphid infestation, respectively. Pymetrozine alone at 1/4 field rate (0.053g a.i./ha) was still effective and led to a 96% reduction in aphid infestation.
机译:通过一系列的现场和实验室实验,我探索了减少对杀虫剂喷洒的依赖,同时利用西兰花-蚜虫-天敌复合物促进天敌控制的方法。为蚜虫寄生的菜蚜虫(Dieretiella rapae,McIntosh)和两个寄主,白菜蚜虫,Brevicoryne Brasicae(L。)和绿色桃蚜,Myzus persicae(Sulzer),提供的人口统计数据表明,Persicae是更好的寄主。 D. rapae。 ;与在油菜双歧杆菌上饲养相比,在百日草上饲养的寄生虫具有更高的内在(rm)和有限的增加率,且世代和倍增时间更短。在推荐的田间速率(0.2128 a.i./ha)下,雷柏蝇成虫对选择性杀虫剂吡me曲嗪的实验室暴露增加了11%,而对Sylgard 309佐剂的暴露减少了18%。结合使用时,这些化学物质协同作用,降低了39%。木乃伊阶段为寄生虫提供了一些保护,因为接触两种化学物质均使rm降低了13%。在实验室中,单独的菜豆D. rapae,单独的七星瓢虫C. Coccinella septempunctata L.和两种生物的组合(比例为1:50的捕食者/寄生物:蚜虫)导致蚜虫侵害水平降低了38%,58%和66%,分别。当低剂量的pymetrozine与两种天敌联合使用时,单独的pymetrozine以1/64的田间速率(0.0038 a.i./ha)引起减少85%,并且获得最高的减少(98%)。在笼养田间试验中,单独的C. septempunctata蚜虫比例为1:50导致蚜虫侵染水平降低了43%。单独的D. rapae和两个天敌并没有减少蚜虫的侵扰。吡me嗪[1/2田间速率(0.106g a.i./ha)]导致蚜虫数量减少99.8%,对于通过生物防治剂潜在减少蚜虫的添加剂而言,效果太明显了。在田间以1:40、1:20和1:10的比例分离C. septempunctata可以导致蚜虫侵染水平分别降低49%,79%和89%。仅以1/4田间速率(0.053g a.i./ha)施用pymetrozine仍然有效,并导致蚜虫侵害减少96%。

著录项

  • 作者

    Acheampong, Susanna.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Biology Entomology.; Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫学;农学(农艺学);
  • 关键词

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