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黄粉虫(Alphitobius diaperinus)雄虫产生的聚集信息素。

Male-produced aggregation pheromone of the lesser mealworm beetle, Alphitobius diaperinus.

作者信息

Bartelt Robert J, Zilkowski Bruce W, Cossé Allard A, Steelman C Dayton, Singh Narinderpal

机构信息

USDA-ARS-NCAUR, Crop BioProtection Research Unit, Peoria, IL 61604, USA.

出版信息

J Chem Ecol. 2009 Apr;35(4):422-34. doi: 10.1007/s10886-009-9611-y. Epub 2009 Apr 1.

Abstract

The lesser mealworm beetle, Alphitobius diaperinus (Panzer), is a widespread serious pest in poultry production facilities and is difficult to control by conventional means. Although pheromone-based tools have become useful in the management of other beetle pests, no pheromone was known for A. diaperinus, and this study sought to develop basic pheromone information. Volatiles were collected in the laboratory from groups of male and female A. diaperinus maintained on poultry food (chick starter mash). Gas chromatographic-mass spectrometric analysis of volatiles collected from feeding males and females revealed five male-specific compounds that were identified as (R)-(+)-limonene, (E)-beta-ocimene, (S)-(+)-linalool, (R)-(+)-daucene, and 2-nonanone. Emission of these began 1-2 weeks after adult emergence and could continue for at least 1 year, ceasing and resuming in response to changes in food availability and quality and other factors. No female-specific compounds were discovered. A synthetic blend of the five male compounds was attractive to both sexes in poultry production facilities in Illinois and Arkansas, indicating that the blend functions as an aggregation pheromone, but it is not yet known whether all five compounds are required for activity. A new pitfall trap is described for field use.

摘要

小黄粉虫(Alphitobius diaperinus (Panzer))是家禽生产设施中广泛存在的严重害虫,难以通过传统方法进行控制。尽管基于信息素的工具已在其他甲虫害虫的管理中发挥作用,但此前尚未发现小黄粉虫的信息素,本研究旨在获取基本的信息素信息。在实验室中,从以家禽饲料(雏鸡开食料)饲养的小黄粉虫雌雄群体中收集挥发物。对从取食的雌雄虫体收集的挥发物进行气相色谱 - 质谱分析,发现了五种雄性特异性化合物,分别鉴定为(R)-(+)-柠檬烯、(E)-β-罗勒烯、(S)-(+)-芳樟醇、(R)-(+)-胡萝卜素和2-壬酮。这些化合物在成虫羽化后1 - 2周开始释放,可持续至少1年,会因食物供应和质量变化及其他因素而停止和恢复释放。未发现雌性特异性化合物。这五种雄性化合物的合成混合物在伊利诺伊州和阿肯色州的家禽生产设施中对雌雄虫均有吸引力,表明该混合物起到聚集信息素的作用,但尚不清楚活性是否需要所有五种化合物。本文描述了一种新的用于田间的陷阱诱捕器。

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