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Invasional interference due to similar inter-and intraspecific competition between invaders may affect management

机译:入侵者之间类似的种间竞争和种内竞争引起的入侵干扰可能会影响管理

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As the number of biological invasions increases, the potential for invader- invader interactions also rises. The effect of multiple invaders can be superadditive (invasional meltdown), additive, or subadditive (invasional interference); which of these situations occurs has critical implications for prioritization of management efforts. Carduus nutans and C. acanthoides, two congeneric invasive weeds, have a striking, segregated distribution in central Pennsylvania, USA. Possible hypotheses for this pattern include invasion history and chance, direct competition, or negative interactions mediated by other species, such as shared pollinators. To explore the role of resource competition in generating this pattern, we conducted three related experiments using a response-surface design throughout the life cycles of two cohorts. Although these species have similar niche requirements, we found no differential response to competition between conspecifics vs. congeners. The response to combined density was relatively weak for both species. While direct competitive interactions do not explain the segregated distributional patterns of these two species, we predict that invasions of either species singly, or both species together, would have similar impacts. When prioritizing which areas to target to prevent the spread of one of the species, it is better to focus on areas as yet unaffected by its congener; where the congener is already present, invasional interference makes it unlikely that the net effect will change.
机译:随着生物入侵数量的增加,入侵者与入侵者相互作用的可能性也随之增加。多个入侵者的影响可以是超加性的(入侵熔毁),加性的或次加性的(入侵干扰);这些情况中的哪一种发生对管理工作的优先级具有至关重要的意义。两种同类的入侵杂草-褐变种Carduus nutans和C.acanthoides,在美国宾夕法尼亚州中部分布十分明显。该模式的可能假设包括入侵历史和机会,直接竞争或其他物种(例如授粉媒介)介导的负面相互作用。为了探索资源竞争在产生这种模式中的作用,我们在两个队列的整个生命周期中使用响应面设计进行了三个相关实验。尽管这些物种具有类似的生态位要求,但我们发现同种与同族之间对竞争的反应没有差异。两种物种对总密度的响应都相对较弱。虽然直接竞争相互作用不能解释这两个物种的分离分布模式,但我们预测,单个物种或两个物种一起入侵将产生相似的影响。当优先确定哪些区域作为目标以防止某一物种的扩散时,最好将重点放在尚未受到同类动物影响的区域上;在已经存在同类物的地方,侵入式干扰使净效应不太可能改变。

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