Temporal dynamics and global flows of insect invasions in an era of globalization

全球化 动力学(音乐) 昆虫 生态学 经济地理学 地理 生物 政治学 社会学 法学 教育学
作者
Cléo Bertelsmeier,Aymeric Bonnamour,Jeff R. Garnas,Tongyi Liu,Rosaëlle Perreault,Sébastien Ollier
出处
期刊: [Springer Science+Business Media]
卷期号:1 (2): 90-103 被引量:19
标识
DOI:10.1038/s44358-025-00016-1
摘要

Human-mediated transport has led to the establishment of more than 6,700 non-native insect species with wide-ranging effects on ecosystems, economies and human health. Understanding how different aspects of globalization affect the spread of non-native insects is crucial to reducing their effects. In this Review, we explore current and historical patterns, drivers and dynamics of global insect invasions facilitated by humans since prehistory. Multiple aspects of the history of globalization have influenced invasion dynamics, including the spread of agricultural practices in the Neolithic period, the advent of early empires and their trade routes, colonization, geopolitical events, wars and economic crises. Technological innovations such as steam ships, containerization and the internet have further accelerated global insect invasions. Spatial invasion patterns are characterized by frequent secondary spread via bridgehead populations, asymmetric intercontinental species flows originating disproportionally from Europe, and biotic homogenization of communities. Insect invasions are predicted to increase dramatically and their dynamics will shift, especially with the opening of trade routes and introduction pathways. Inspection at ports of entry and early detection systems are crucial to inform mitigation efforts. Future interdisciplinary collaborations will integrate knowledge from diverse and emerging data sources and technologies, advancing our understanding of insect invasion biology. Global insect invasions are increasing, driven by advances in globalization and technology. This Review discusses the effects of increasing trade and transport on insect invasions worldwide, and strategies for mitigation of future insect invasions.
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