Jing Tian-Xing, Zhang Ying-Xin, Dou Wei, Jiang Xin-Yi, Wang Jin-Jun
Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing 400716, China.
State Cultivation Base of Crop Stress Biology for Southern Mountainous Land, Academy of Agricultural Sciences, Southwest University, Chongqing 400716, China.
Insects. 2019 Sep 3;10(9):283. doi: 10.3390/insects10090283.
Intrapuparial development is a special pattern of metamorphosis in cyclorrhaphous flies, in which the pupa forms in an opaque, barrel-like puparium. This has been well studied in forensic insects for age estimations. In this study, the intrapuparial development of a quarantine agricultural pest, (Hendel), was studied under a constant temperature of 27 ± 1 °C and 70 ± 5% relative humidity. Results showed that intrapuparial development could be divided into five stages: Larval-pupal apolysis, cryptocephalic pupa, phanerocephalic pupa, pharate adult, and emergent adult. It lays a morphology-based foundation for molecular mechanism studies and enhances the understanding of the physiological basis for changes in intrapuparial development. More importantly, the chronology of intrapuparial development can be used to predict the emergence time of tephritid flies, indicating when to spray insecticides to control these phytophagous agricultural pests. This may be an effective approach to reduce the use of insecticides and slow down the evolution of insecticidal resistance.
围蛹发育是环裂亚目蝇类一种特殊的变态模式,其中蛹在不透明的桶状蛹壳内形成。这在法医昆虫学中已被充分研究用于年龄估计。在本研究中,在27±1℃的恒温及70±5%的相对湿度条件下,对一种检疫性农业害虫——[害虫名称未给出,原文此处缺失](亨德尔)的围蛹发育进行了研究。结果表明,围蛹发育可分为五个阶段:幼虫-蛹脱壳期、隐头蛹期、显头蛹期、羽化前期和羽化期成虫。这为分子机制研究奠定了基于形态学的基础,并增进了对围蛹发育变化生理基础的理解。更重要的是,围蛹发育的时间顺序可用于预测实蝇的羽化时间,指示何时喷洒杀虫剂以控制这些植食性农业害虫。这可能是减少杀虫剂使用并减缓抗药性进化的一种有效方法。