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果蝇(膜翅目:细腰亚目)在全球极端降温下的弹性机制:寄生反应和生理适应的见解。

Resilience mechanisms of Trichopria drosophilae (Hymenoptera: Diapriinae) under global extreme cooling: insights into parasitic response and physiological adaptation.

机构信息

College of Plant Protection, Yunnan Agricultural University, State Key Laboratory of Yunnan Biological Resources Protection and Utilization, Kunming 650201, China.

出版信息

J Econ Entomol. 2024 Oct 14;117(5):1846-1858. doi: 10.1093/jee/toae134.

Abstract

Global climate warming and frequent extreme low-temperature events have made it essential to investigate the impact of low temperatures on parasitic wasps to protect and strengthen farmland biodiversity, which in turn enhances the biological control potential of natural enemies such as parasitic wasps. We systematically examined how low-temperature stress affects the parasitic functional response of Trichopria drosophilae to Drosophila suzukii (Diptera: Drosophilidae) pupae. Our findings indicate that the parasitic behavior of T. drosophilae towards D. suzukii pupae aligns with the Holling II functional response model following exposure to different temperatures. Within the temperature range of 8 °C to -8 °C, lower temperatures correlated decreased instantaneous attack rate of T. drosophilae and an increase in processing time. The search constant Q initially increased and then decreased with declining temperatures. Short-term low-temperature stress negatively impacted the parasitic and searching abilities of T. drosophilae but did not alter its parasitic functional response model. Notably, short-term low-temperature stress had minimal effects on the water content, protein content, and total sugar content of male and female T. drosophilae adults. However, as temperatures decreased, the activities of key enzymes, including GAPDH, SOD, T-AOC, and malondialdehyde (MDA), exhibited an initial increase followed by a decrease. Conversely, the activities of LDH and HOAD decreased, while the activities of CAT and POD increased. Further study on the effect of short-term low temperature on T. drosophilae can provide a research basis for the large-scale production and low-temperature refrigeration technology of T. drosophilae, and provide a scientific basis for its efficient use in the field.

摘要

全球气候变暖及频繁发生的极端低温事件,使研究低温对寄生蜂的影响以保护和增强农田生物多样性变得尤为重要,而这反过来又增强了寄生蜂等自然天敌的生物控制潜力。我们系统地研究了低温胁迫如何影响黑瘤姬蜂对草莓实蝇蛹的寄生功能反应。我们的研究结果表明,在不同温度下,黑瘤姬蜂对草莓实蝇蛹的寄生行为符合 Holling II 功能反应模型。在 8°C 至-8°C 的温度范围内,较低的温度与黑瘤姬蜂瞬时攻击率的降低和处理时间的增加有关。搜索常数 Q 随着温度的降低而先增加后降低。短期低温胁迫会降低黑瘤姬蜂的寄生和搜索能力,但不会改变其寄生功能反应模型。值得注意的是,短期低温胁迫对黑瘤姬蜂雌雄成虫的水分含量、蛋白质含量和总糖含量影响较小。然而,随着温度的降低,包括 GAPDH、SOD、T-AOC 和丙二醛(MDA)在内的关键酶的活性先增加后减少。相反,LDH 和 HOAD 的活性降低,而 CAT 和 POD 的活性增加。进一步研究短期低温对黑瘤姬蜂的影响,可以为黑瘤姬蜂的大规模生产和低温冷藏技术提供研究基础,并为其在田间的高效利用提供科学依据。

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