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Predicting effects of ecosystem engineering on species richness along primary productivity gradients.

机译:沿着初级生产力梯度预测生态系统工程对物种丰富度的影响。

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Physical ecosystem engineering is the process by which some species change the distribution of materials and energy in ecosystems. Although several studies have shown that this process is a driver of local species diversity, the current challenge is predicting when and where ecosystem engineering will have large or small impacts on communities, while also explaining why impacts vary in magnitude across engineer species and environments. This study addresses this issue and proposes a series of predictions for these effects at the three spatial scales (the patch, the habitat and the landscape) along environmental gradients of physical stress. The integrative prediction of this study was that the difference in species diversity between engineered and unmodified situations (patches, habitats or landscapes) will increase as the difference in physical stress between engineered and unmodified patches becomes larger. To test the prediction, the effects of two well known high-Andean ecosystem engineers, the cushion plants Azorella madreporica and Laretia acaulis, were assessed on plant species richness in central Chile. The results support the main prediction, showing that ecosystem engineers have negative effects on species diversity at sites when the environmental modifications they perform increase physical stress for other species, while they have positive effects at sites where these habitat changes mitigate physical stress. Then, the effects of the ecosystem engineers on species diversity seem to depend on the environmental context, where larger environmental modifications are reflected in greater impacts, either positive or negative, on species diversity.
机译:物理生态系统工程是一些物种改变生态系统中物质和能量分布的过程。尽管多项研究表明,这一过程是当地物种多样性的驱动力,但当前的挑战是预测生态系统工程在何时何地对社区产生大小影响,同时还解释了为什么影响程度在整个工程物种和环境之间会有所不同。这项研究解决了这个问题,并针对物理应力的环境梯度在三个空间尺度(斑块,栖息地和景观)上对这些影响提出了一系列预测。这项研究的综合预测是,工程和未修改的情况(斑块,栖息地或景观)之间物种多样性的差异将随着工程和未修改的斑块之间的物理压力差异变大而增加。为了检验这一预测,评估了智利中部两个著名的安第斯山脉生态系统工程师的坐垫植物madorporica和Laretia acaulis对丰富植物物种的影响。结果支持主要预测,表明当生态系统工程师进行的环境改变增加其他物种的物理压力时,会对站点的物种多样性产生负面影响,而对这些栖息地的变化缓解物理压力的站点产生积极影响。然后,生态系统工程师对物种多样性的影响似乎取决于环境,在更大的环境变化对物种多样性的正面或负面影响中反映了更大的环境变化。

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