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Invasive plants may promote predator‐mediated feedback that inhibits further invasion

机译:入侵植物可能促进捕食者介导的反馈,从而抑制进一步入侵

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AbstractUnderstanding the impacts of invasive species requires placing invasion within a full community context. Plant invaders are often considered in the context of herbivores that may drive invasion by avoiding invaders while consuming natives (enemy escape), or inhibit invasion by consuming invaders (biotic resistance). However, predators that attack those herbivores are rarely considered as major players in invasion. Invasive plants often promote predators, generally by providing improved habitat. Here, we show that predator-promoting invaders may initiate a negative feedback loop that inhibits invasion. By enabling top-down control of herbivores, predator-promoting invaders lose any advantage gained through enemy escape, indirectly favoring natives. In cases where palatable invaders encounter biotic resistance, predator promotion may allow an invader to persist, but not dominate. Overall, results indicate that placing invaders in a full community context may reveal reduced impacts of invaders compared to expectations based on simple plant–plant or plant–herbivore subsystems.
机译:摘要了解入侵物种的影响需要将入侵置于完整的社区环境中。通常在草食动物的背景下考虑植物入侵者,这些草食动物可以通过在食用本地生物时避免入侵者来推动入侵(敌人逃逸),或者通过食用入侵者来抑制入侵(生物抗性)。但是,攻击这些食草动物的掠食者很少被视为入侵的主要参与者。外来入侵植物通常通过提供改善的栖息地来促进捕食者。在这里,我们表明,促进掠食者入侵者可能会启动抑制入侵的负反馈回路。通过自上而下地控制草食动物,促进掠食者入侵者失去了从敌人逃脱中获得的任何优势,从而间接地偏爱了当地人。在可口的入侵者遇到生物抗药性的情况下,掠食者的升级可能会使入侵者持续存在,但不能独占minate头。总体而言,结果表明,与基于简单植物-植物或植物-草食动物子系统的预期相比,将入侵者置于完整的社区环境中可能会显示入侵者的影响降低。

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