Assessing the phytosanitary threats of two non-native crickets under temperature change

IF 4.1 1区 农林科学 Q1 ENTOMOLOGY
Phillip J. Haubrock, Anna K. Kulessa, Ross N. Cuthbert, Ismael Soto, Paride Balzani, Mathieu Toutain, Antonín Kouba
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Abstract

Numerous phytosanitary threats challenge global agriculture, ecosystems, and food security. These threats are exacerbated by non-native species and diseases that are projected to intensify in the future due to global warming and anthropogenic habitat alterations. Assessments of the ecological impacts of overlooked phytosanitary threats are urgently needed under shifting environments. In this study, the potential effects of two non-native Orthoptera species (the house cricket Acheta domesticus and the two-spotted cricket Gryllus bimaculatus) were assessed using functional response analyses. We quantified their potential impacts on agriculturally relevant crops (millet) under increasing temperatures (20 °C, 25 °C, and 30 °C) as individuals and between interspecific pairs. The experiments revealed similar impacts on seeds between both species and across temperatures. Temperature tended to amplify consumption rates and functional responses. The combined interspecific cricket presence generally yielded an additive effect on seeds, with a few instances of synergistic interactions, whereby non-trophic interaction strengths significantly interacted with resource density and temperature. Both species demonstrated remarkable adaptability to varying temperatures, with low mortality accentuating their capacity for impacts under current and future temperatures. This emphasizes the imperative of including both species in phytosanitary assessments. Moreover, population monitoring and the implementation of effective management strategies emerge as pivotal measures for safeguarding agricultural productivity and conserving local ecosystems in the future. The study’s findings thus underscore the potential impact of A. domesticus and G. bimaculatus, particularly in the context of steadily ascending temperatures, to pose a risk to agricultural productivity and food security.

评估温度变化下两种非本地蟋蟀的植物检疫威胁
许多植物检疫威胁挑战着全球农业、生态系统和粮食安全。由于全球变暖和人为改变生境,预计未来非本土物种和疾病将加剧这些威胁。在不断变化的环境下,迫切需要评估被忽视的植物检疫威胁的生态影响。本研究采用功能响应分析的方法,对两种非本地直翅目蟋蟀(家蟋蟀Acheta domesticus和双斑蟋蟀Gryllus bimaculatus)的潜在影响进行了评估。我们量化了它们在温度升高(20°C、25°C和30°C)下对农业相关作物(谷子)的潜在影响。实验揭示了两个物种之间和不同温度对种子的相似影响。温度往往会放大消耗速率和功能反应。结合种间蟋蟀的存在通常对种子产生加性效应,并有少数协同相互作用的实例,其中非营养相互作用强度与资源密度和温度显着相互作用。这两个物种都表现出对不同温度的显著适应性,低死亡率突出了它们在当前和未来温度下的影响能力。这强调了将这两个物种纳入植物检疫评估的必要性。此外,人口监测和执行有效的管理战略将成为未来保障农业生产力和保护当地生态系统的关键措施。因此,这项研究的发现强调了家蝇和双峰家蝇的潜在影响,特别是在气温稳步上升的背景下,对农业生产力和粮食安全构成威胁。
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来源期刊
Journal of Pest Science
Journal of Pest Science 生物-昆虫学
CiteScore
10.40
自引率
8.30%
发文量
114
审稿时长
6-12 weeks
期刊介绍: Journal of Pest Science publishes high-quality papers on all aspects of pest science in agriculture, horticulture (including viticulture), forestry, urban pests, and stored products research, including health and safety issues. Journal of Pest Science reports on advances in control of pests and animal vectors of diseases, the biology, ethology and ecology of pests and their antagonists, and the use of other beneficial organisms in pest control. The journal covers all noxious or damaging groups of animals, including arthropods, nematodes, molluscs, and vertebrates. Journal of Pest Science devotes special attention to emerging and innovative pest control strategies, including the side effects of such approaches on non-target organisms, for example natural enemies and pollinators, and the implementation of these strategies in integrated pest management. Journal of Pest Science also publishes papers on the management of agro- and forest ecosystems where this is relevant to pest control. Papers on important methodological developments relevant for pest control will be considered as well.
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