Enhanced survival of mass-reared Mediterranean fruit flies via regular diurnal temperature oscillations.

Hyoseok Lee, Lori A F N Carvalho, Nicholas C Manoukis
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Abstract

Effectively mass-rearing insects is critical for research, for environmentally friendly technologies like sterile insect technique, producing biological control agents, and enabling novel pest control methods such as those based on genetics or symbionts. While constant temperature conditions are typically used in mass-rearing, at what is considered an optimum value that produces the fittest insects, homeostatic conditions do not reflect the real world. We investigated the performance of mass-reared adult Ceratitis capitata Wiedemann (Diptera: Tephritidae) under constant (24 °C) and oscillating (mean 24 °C with 4 and 10 °C range) temperature regimes. Insect survivorship, flight ability, and female fecundity were assessed across the temperature regimes. Additionally, we compared adult C. capitata performance under environmental chamber and outdoor conditions to determine if temperature and humidity as simulated in the chambers resulted in similar performance outcomes for the insects as being outdoors. Male C. capitata under the 10 °C range treatment had higher survival probability at 55 d postemergence compared to the constant temperature regime, while females showed no significant differences in survivorship among temperature regimes. Flight ability and fecundity were not significantly affected by temperature regimes, though the 10 °C range group showed the highest fecundity. Comparisons between environmental chamber and outdoor conditions revealed minimal differences in performance metrics. Our findings suggest that the field performance of mass-reared male adult C. capitata can be improved by oscillating temperature regimes in mass-rearing facilities.

通过有规律的昼夜温度波动提高大规模饲养的地中海果蝇的存活率。
有效地大规模饲养昆虫对研究、对环境友好型技术(如昆虫不育技术)、生产生物防治剂以及实现基于遗传学或共生体的新型虫害防治方法至关重要。虽然恒温条件通常用于大规模饲养,但在被认为能产生最适昆虫的最佳温度下,稳态条件并不能反映现实世界。我们研究了在恒定(24°C)和振荡(平均24°C, 4°C和10°C范围内)温度条件下大规模饲养的成虫(双翅目:绦虫科)的表现。昆虫存活率、飞行能力和雌性繁殖力在不同温度下进行了评估。此外,我们比较了成虫在环境室和室外条件下的表现,以确定室内模拟的温度和湿度是否会导致与室外相似的表现结果。在10℃范围内处理的雄性头锥虫羽化后55 d的存活率高于恒温处理,而雌性头锥虫羽化后55 d的存活率在不同温度下无显著差异。飞行能力和繁殖力不受温度的显著影响,但10°C范围组的繁殖力最高。环境室和室外条件之间的比较揭示了性能指标的最小差异。本研究结果表明,在大规模饲养设施中,温度的变化可以提高头腹小蠹雄成虫的田间生产性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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