首页> 外文期刊>Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes >Efficacy of new mass-trapping devices against Bactrocera oleae (Diptera tephritidae) for minimizing pesticide input in agroecosystems
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Efficacy of new mass-trapping devices against Bactrocera oleae (Diptera tephritidae) for minimizing pesticide input in agroecosystems

机译:新的诱集装置对油菜小杆菌(Diptera tephritidae)的功效,可最大程度地减少农业生态系统中的农药输入

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摘要

Decreasing pesticide use in olive groves is central to controlling pathogens and pests such as Bactrocera oleae. This has led to the development of mass trapping devices which not only minimize pesticide use but, with improved efficacy of attractants, also decrease costs associated with pest control and ensures that the quality of olive oil is safe for human consumption. This study was undertaken to test a new device which utilizes reduced quantities of both insecticide (lambda-cyalothrin) as well as the female olive fly pheromone (1,7-dioxaspiro-(5.5)-undecane). The new device was tested against an older device manufactured by the same company. The use of plastic polymers as substrate for encapsulating the pheromone allowed for a slower pheromone release, prolonging the efficacy and duration and thus reducing costs. The density of adult populations was monitored using yellow chromotropic traps that were checked every ten days and the degree of olive infestation, as determined by preimago stages, was assessed by analyzing 100 drupes per plot. Infestation analyses were performed every ten days. The control plot had the lowest density of adults and the highest drupe infestation rate. The new devices were more effective than the older devices in both attracting adults and controlling infestation of drupes. Moreover, the new devices containing reduced amounts of pheromone and insecticide were cheaper and exhibited longer functional efficacy. In addition to the slower release of attractants, the plastic polymers used in these newer devices were also more resistant to mechanical and weather degradations. Results demonstrate that mass trapping can indeed be an effective means of controlling B. oleae via eco-sustainable olive farming.
机译:减少橄榄树林中的农药使用对于控制病原体和害虫(例如油菜小实蝇)至关重要。这导致了质量捕集装置的发展,该装置不仅可以最大程度地减少农药的使用,而且可以提高引诱剂的功效,还可以降低与害虫控制有关的成本,并确保橄榄油的质量对人类食用是安全的。进行这项研究是为了测试一种新装置,该装置使用了减少量的杀虫剂(lambda-cyalothrin)和雌性橄榄蝇信息素(1,7-dioxaspiro-(5.5)-十一烷)。新设备已针对同一公司生产的旧设备进行了测试。使用塑料聚合物作为包封信息素的基质使得信息素释放较慢,从而延长了功效和持续时间,从而降低了成本。使用每隔十天检查一次的黄色变色陷阱监测成年种群的密度,并通过分析每个地块的100个核果来评估通过早熟阶段确定的橄榄侵染程度。每十天进行一次侵染分析。对照地块的成虫密度最低,而核果的侵染率最高。新设备在吸引成年人和控制核病方面都比旧设备更有效。而且,含有减少的信息素和杀虫剂的量的新装置更便宜并且具有更长的功能功效。除了较慢地释放引诱剂外,这些新型设备中使用的塑料聚合物还具有更好的抗机械和耐候性。结果表明,通过生态可持续的橄榄种植,大量诱捕确实是控制油菜芽孢杆菌的有效手段。

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    Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Centro di Ricerca per l'Olivicoltura e l'Industria Olearia, Rende, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:58:06

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