Interspecific behavioural interference and range dynamics: current insights and future directions

Interspecific behavioural interference and range dynamics: current insights and future directions
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种间行为干扰和范围动态:当前见解和未来方向

DOI:
10.1111/brv.12993
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发表时间:
2023
期刊:
影响因子:
10
通讯作者:
Drury, Jonathan P.
Drury, Jonathan P.
中科院分区:
生物学1区
文献类型:
--
作者:
Patterson, Christophe W.;Drury, Jonathan P.

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在变化的群落中,新的生物相互作用在决定物种范围跟踪合适栖息地的能力方面发挥着关键作用。到目前为止,生物相互作用对范围动态的影响主要是在不同营养水平之间相互作用的背景下进行的,或者在较小程度上是在相同营养水平的物种之间的开发性竞争的背景下进行的。然而,理论和越来越多的经验研究都表明,物种间的行为干扰,如物种间的领土和交配相互作用,即使在没有资源竞争的情况下,也可以减缓活动范围的扩大,排除共存,或导致局部灭绝。我们对当前关于种间行为干扰对射程动态影响的实证研究进行了系统的回顾。我们的发现表明,有大量证据表明,一个物种的行为干扰可以影响另一个物种的空间分布。此外,我们确定了几个差距,需要更多的实证工作来有力地测试来自理论的预测。最后,我们概述了未来研究的几个途径,提出了如何将物种间行为干扰纳入现有科学框架的建议,以了解生物相互作用如何影响范围扩展,例如物种分布模型,以更好地理解行为干扰对未来范围动态结果的潜在后果。
Novel biotic interactions in shifting communities play a key role in determining the ability of species' ranges to track suitable habitat. To date, the impact of biotic interactions on range dynamics have predominantly been studied in the context of interactions between different trophic levels or, to a lesser extent, exploitative competition between species of the same trophic level. Yet, both theory and a growing number of empirical studies show that interspecific behavioural interference, such as interspecific territorial and mating interactions, can slow down range expansions, preclude coexistence, or drive local extinction, even in the absence of resource competition. We conducted a systematic review of the current empirical research into the consequences of interspecific behavioural interference on range dynamics. Our findings demonstrate there is abundant evidence that behavioural interference by one species can impact the spatial distribution of another. Furthermore, we identify several gaps where more empirical work is needed to test predictions from theory robustly. Finally, we outline several avenues for future research, providing suggestions for how interspecific behavioural interference could be incorporated into existing scientific frameworks for understanding how biotic interactions influence range expansions, such as species distribution models, to build a stronger understanding of the potential consequences of behavioural interference on the outcome of future range dynamics.
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