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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Biodiversity effects of ecosystem engineers are stronger on more complex ecosystem processes
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Biodiversity effects of ecosystem engineers are stronger on more complex ecosystem processes

机译:在更复杂的生态系统过程中,生态系统工程师的生物多样性影响更强

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摘要

The relative importance of species richness and identity for the diversity- function relationship remains controversial. We mechanistically explored the potential contribution of ecosystem processes complexity (EPC; i.e., the number of pathways and mechanisms through which an ecosystem process can be directly and/or indirectly affected by species and/or their interactions) to the resolution of this controversy. We hypothesized that the complementarity effects of biodiversity will be stronger and that the diversity-function relationship will be more dependent on species richness as the EPC increases. Using a benthic bioturbator community as a model system we tested these predictions across ecosystem processes that could be ordered according to their complexity (suspended material flux, PO4-P flux, NH4-N flux, bacterioplankton production). Consistent with our predictions, species richness explained an increasing proportion of data variation as EPC increased, whereas the contrary was observed for species composition. Nontransgressive overyielding was not affected by EPC, but the magnitude of transgressive overyielding increased significantly with EPC, indicating that complementarity may be stronger as EPC increases. Our results highlight the importance of considering the interactive role of the characteristics of ecosystem processes in our theoretical understanding of the diversity-function relationship and its underlying mechanisms.
机译:物种丰富度和同一性对于多样性-功能关系的相对重要性仍然存在争议。我们机械地探讨了生态系统过程复杂性(EPC;即物种和/或其相互作用直接和/或间接影响生态系统过程的途径和机制的数量)对解决这一争议的潜在贡献。我们假设,随着EPC的增加,生物多样性的互补效应将更强,多样性与功能的关系将更多地取决于物种的丰富度。我们使用底栖生物扰流器群落作为模型系统,对生态系统过程中的这些预测进行了测试,这些预测可以根据其复杂性(悬浮物质通量,PO4-P通量,NH4-N通量,浮游细菌产生)进行排序。与我们的预测一致,物种丰富度解释了随着EPC的增加,数据变化的比例越来越大,而物种组成却相反。非侵略性过度生产不受EPC影响,但随着EPC的侵害性过度生产的幅度显着增加,表明随着EPC的增加,互补性可能会增强。我们的结果突出了在我们对多样性-功能关系及其潜在机制的理论理解中,考虑生态系统过程特征的相互作用的重要性。

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