环境与饵料对蝇(双翅目:蝇科)和肉蝇(双翅目:麻蝇科)诱捕效果的影响。

IF 2
Tammy L Bouldin, Ashleigh M Faris, Cynthia C Lord
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引用次数: 0

摘要

诱饵诱捕是昆虫学领域的一种常见做法,用于研究特定昆虫群体的存在,数量和分布。这项技术也可以用来捕获活昆虫,用于进一步的研究或建立实验室菌落。研究了不同饵料类型、饵料分解程度以及针对腐肉相关科蠓科和石蛉科的活捕陷阱的环境效应。夏季在德克萨斯州斯蒂芬斯县进行了为期3个月的诱捕。采用模型选择的方法分析了饵料类型、分解水平、温度和相对湿度对蝇蛆科和麻蝇科捕集总体效果的影响,以及对麦绿蝇(双翅目:蝇蛆科)捕集效果的影响。虽然数据变化较大,在最佳模型中R2不高,但最佳模型中始终包含相对湿度,并且相对湿度可能对捕蝇数量起重要作用。也有证据表明,在一些模型中,相对湿度和诱饵类型之间存在相互作用,这些模型描述了收集到的卡利法蝇的数量。本研究结果表明,需要进一步研究相对湿度等环境变量对腐肉相关蝇野外诱捕常用饵料类型的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interactions of environment and bait on blow fly (Diptera: Calliphoridae) and flesh fly (Diptera: Sarcophagidae) trap capture.

Bait trapping is a common practice throughout the field of entomology to target specific groups of insects for research interests like surveys of presence, abundance, and distribution. This technique can also be used to capture live insects to use in further research studies or to establish laboratory colonies. This study investigated the effectiveness of different types of bait, levels of bait decomposition, and environmental effects for live traps targeting carrion-associated families Calliphoridae and Sarcophagidae. Trapping was conducted over a 3-mo period in the summer in Stephens County, Texas. Model selection was used to analyze the effects of bait type, decomposition level, temperature, and relative humidity on overall trap capture at the family level for Calliphoridae and Sarcophagidae, and the species level for Lucilia mexicana Macquart (Diptera: Calliphoridae). Though the data were highly variable and did not show high R2 in the best models, relative humidity was always included in the best models and may play an important role in the number of flies captured during bait trapping. There is also evidence of an interaction between relative humidity and bait type present in some models describing the number of Calliphoridae collected. The results of this study indicate a need for further research into the interactions between environmental variables like relative humidity on bait types commonly used in field trapping for carrion-associated flies.

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