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Spread dynamics of invasive species

机译:入侵物种的传播动力学

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摘要

Species invasions are a principal component of global change, causing large losses in biodiversity as well as economic damage. Invasion theory attempts to understand and predict invasion success and patterns of spread. However, there is no consensus regarding which species or community attributes enhance invader success or explain spread dynamics. Experimental and theoretical studies suggest that regulation of spread dynamics is possible; however, the conditions for its existence have not yet been empirically demonstrated. If invasion spread is a regulated process, the structure that accounts for this regulation will be a main determinant of invasion dynamics. Here we explore the existence of regulation underlying changes in the rate of new site colonization. We employ concepts and analytical tools from the study of abundance dynamics and show that spread dynamics are, in fact, regulated processes and that the regulation structure is notably consistent among invasions occurring in widely different contexts. We base our conclusions on the analysis of the spread dynamics of 30 species invasions, including birds, amphibians, fish, invertebrates, plants, and a virus, all of which exhibited similar regulation structures. In contrast to current beliefs that species invasions are idiosyncratic phenomena, here we provide evidence that general patterns do indeed exist.
机译:物种入侵是全球变化的主要组成部分,造成生物多样性的巨大损失以及经济损失。入侵理论试图理解和预测入侵的成功和传播方式。然而,关于哪种物种或群落属性增强入侵者成功率或解释传播动态尚无共识。实验和理论研究表明,传播动力学的调节是可能的。然而,其存在的条件尚未得到经验证明。如果入侵扩散是一个受管制的过程,那么说明这一管制的结构将是入侵动态的主要决定因素。在这里,我们探讨了新网站定居率变化背后潜在的调控因素。我们从对丰度动态的研究中采用了概念和分析工具,并证明了扩散动态实际上是受规制的过程,并且规制结构在不同环境下发生的入侵之间具有显着的一致性。我们的结论基于对30种物种入侵的传播动态的分析,其中包括鸟类,两栖动物,鱼类,无脊椎动物,植物和病毒,所有这些物种都表现出相似的调控结构。与当前认为物种入侵是特质现象的看法相反,在此我们提供证据证明确实存在一般模式。

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