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促进级联驱动本地生物多样性与入侵成功之间的正相关关系。

Facilitation cascade drives positive relationship between native biodiversity and invasion success.

机构信息

Department of Ecology and Evolutionary Biology, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Ecology. 2010 May;91(5):1269-75. doi: 10.1890/09-1301.1.

Abstract

The pervasive impact of invasive species has motivated considerable research to understand how characteristics of invaded communities, such as native species diversity, affect the establishment of invasive species. Efforts to identify general mechanisms that limit invasion success, however, have been frustrated by disagreement between landscape-scale observations that generally find a positive relationship between native diversity and invasibility and smaller-scale experiments that consistently reveal competitive interactions that generate the opposite relationship. Here we experimentally elucidate the mechanism explaining the large-scale positive associations between invasion success and native intertidal diversity revealed in our landscape-scale surveys of New England shorelines. Experimental manipulations revealed this large-scale pattern is driven by a facilitation cascade where ecosystem-engineering species interact nonlinearly to enhance native diversity and invasion success by alleviating thermal stress and substrate instability. Our findings reveal that large-scale diversity-invasion relationships can be explained by small-scale positive interactions that commonly occur across multiple trophic levels and functional groups. We argue that facilitation has played an important but unrecognized role in the invasion of other well studied systems, and will be of increasing importance with anticipated climate change.

摘要

入侵物种的普遍影响促使人们进行了大量研究,以了解入侵群落的特征(如本地物种多样性)如何影响入侵物种的建立。然而,人们努力确定限制入侵成功的一般机制,但由于景观尺度观察结果与较小尺度实验之间存在分歧而受挫。景观尺度观察结果普遍发现本地多样性与可入侵性之间呈正相关关系,而较小尺度实验则一致揭示了产生相反关系的竞争相互作用,因此,这一直观的解释入侵成功与新英格兰海岸线景观尺度调查中发现的本地潮间带多样性之间的大规模正相关关系的机制仍存在争议。我们的实验揭示了这种大规模模式是由一个促进级联驱动的,其中生态系统工程物种通过缓解热应力和基质不稳定性,非线性地相互作用,从而增强本地多样性和入侵成功。我们的研究结果表明,大规模的多样性-入侵关系可以用在多个营养级和功能组中普遍存在的小规模正相互作用来解释。我们认为,在其他经过充分研究的系统的入侵中,促进作用发挥了重要但未被认识到的作用,并且随着预期的气候变化,它的重要性将越来越大。

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