首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Investigating the Current and Future Co-Occurrence of Ambrosia artemisiifolia and Ophraella communa in Europe through Ecological Modelling and Remote Sensing Data Analysis
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Investigating the Current and Future Co-Occurrence of Ambrosia artemisiifolia and Ophraella communa in Europe through Ecological Modelling and Remote Sensing Data Analysis

机译:通过生态建模和遥感数据分析调查欧洲青蒿和小菜蛾的当前和未来同时发生

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摘要

The common ragweed Ambrosia artemisiifolia has spread throughout Europe since the 1800s, infesting croplands and causing severe allergic reactions. Recently, the ragweed leaf beetle Ophraella communa was found in Italy and Switzerland; considering that it feeds primarily on A. artemisiifolia in its invaded ranges, some projects started biological control of this invasive plant through the adventive beetle. In this context of a ‘double’ invasion, we assessed the influence of climate change on the spread of these alien species through ecological niche modelling. Considering that A. artemisiifolia mainly lives in agricultural and urbanized areas, we refined the models using satellite remote-sensing data; we also assessed the co-occurrence of the two species in these patches. A. artemisiifolia is predicted to expand more than O. communa in the future, with the medium and high classes of suitability of the former increasing more than the latter, resulting in lower efficacy for O. communa to potentially control A. artemisiifolia in agricultural and urbanized patches. Although a future assessment was performed through the 2018 land-cover data, the predictions we propose are intended to be a starting point for future assessments, considering that the possibility of a shrinkage of target patches is unlikely to occur.
机译:自1800年代以来,常见的豚草豚草(Ambrosia artemisiifolia)遍及整个欧洲,侵染农田并引起严重的过敏反应。最近,在意大利和瑞士发现了豚草叶甲虫Ophraella communa。考虑到它主要以入侵范围内的青蒿为食,一些项目开始通过外来甲虫对该入侵植物进行生物防治。在“双重”入侵的背景下,我们通过生态位模型评估了气候变化对这些外来物种传播的影响。考虑到青蒿(A. artemisiifolia)主要生活在农业和城市化地区,我们使用卫星遥感数据完善了模型;我们还评估了这些斑块中两种物种的共存。预计将来青蒿的扩展范围将比普通青蒿更大,前者的中,高级适应性要比后者高,从而导致普通青蒿在农业和农业领域潜在控制青蒿的功效降低。城市化的补丁。尽管通过2018年的土地覆盖数据进行了未来评估,但考虑到目标斑块收缩的可能性不大,我们建议的预测旨在作为未来评估的起点。

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