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水分和土壤类型是斜纹夜蛾(鳞翅目:夜蛾科)化蛹的主要驱动因素。

Moisture and soil type are primary drivers of Helicoverpa zea (Lepidoptera: Noctuidae) pupation.

机构信息

Department of Entomology and Plant Pathology, North Carolina State University, Vernon G. James Research and Extension Center, 207 Research Station Rd., Plymouth, NC 27962, USA.

Department of Entomology, Michigan State University, Natural Science Building, 288 Farm Ln, East Lansing, MI 48823, USA.

出版信息

Environ Entomol. 2023 Oct 16;52(5):847-852. doi: 10.1093/ee/nvad074.

Abstract

Studies in the lab have demonstrated that evaluating the effect of soil moisture and other variables is essential for understanding the importance of environmental factors influencing the Heliothinae pupal stage, but simulated field studies are conducted infrequently. We compared the pupation of Helicoverpa zea (Boddie) (Lepidoptera: Noctuidae) under saturated and unsaturated conditions across 3 distinct soil types (coarse sand, high organic muck, and fine-textured clay) and observed adult emergence, as well as pupal depth and weight. The interaction between soil type and moisture had a significant effect on adult emergence. Fewer adults emerged from dry fine-textured clay soil than from dry coarse sand and high organic muck. However, there was no effect of soil type and no interaction between soil and moisture on pupal depth. Soil moisture was the primary driver of pupal depth, suggesting prepupae use moisture to mediate their position within the pupal chamber. In addition, pupal weight was unrelated to soil type, moisture, or their interaction. Our study demonstrates that soil moisture can be a greater driver of H. zea pupation than soil type, but additional observations are necessary to understand the mechanism by which moisture impacts pupation.

摘要

实验室研究表明,评估土壤湿度和其他变量的影响对于了解影响天蛾科蛹期的环境因素的重要性至关重要,但模拟野外研究却很少进行。我们比较了在 3 种不同土壤类型(粗砂、高有机质淤泥和细纹理粘土)下,满足和不满足条件时,玉米穗螟(Boddie)(鳞翅目:夜蛾科)的化蛹情况,并观察了成虫的出现情况,以及蛹的深度和重量。土壤类型和湿度之间的相互作用对成虫的出现有显著影响。与干燥的粗砂和高有机质淤泥相比,干燥的细纹理粘土中出现的成虫较少。然而,土壤类型对蛹的深度没有影响,土壤和水分之间也没有相互作用。土壤湿度是影响蛹深度的主要因素,这表明预蛹利用水分来调节其在蛹室中的位置。此外,蛹的重量与土壤类型、湿度或它们之间的相互作用无关。我们的研究表明,土壤湿度可能是玉米穗螟化蛹的一个比土壤类型更大的驱动因素,但需要进一步的观察来了解水分影响化蛹的机制。

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