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Biotic homogenization can decrease landscape-scale forest multifunctionality

机译:生物同质化会降低景观尺度森林的多功能性

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摘要

Many experiments have shown that local biodiversity loss impairs the ability of ecosystems to maintain multiple ecosystem functions at high levels (multifunctionality). In contrast, the role of biodiversity in driving ecosystem multifunctionality at landscape scales remains unresolved. We used a comprehensive pan-European dataset, including 16 ecosystem functions measured in 209 forest plots across six European countries, and performed simulations to investigate how local plot-scale richness of tree species (α-diversity) and their turnover between plots (β-diversity) are related to landscape-scale multifunctionality. After accounting for variation in environmental conditions, we found that relationships between α-diversity and landscape-scale multifunctionality varied from positive to negative depending on the multifunctionality metric used. In contrast, when significant, relationships between β-diversity and landscape-scale multifunctionality were always positive, because a high spatial turnover in species composition was closely related to a high spatial turnover in functions that were supported at high levels. Our findings have major implications for forest management and indicate that biotic homogenization can have previously unrecognized and negative consequences for large-scale ecosystem multifunctionality.
机译:许多实验表明,当地生物多样性的丧失损害了生态系统在高水平上维持多种生态系统功能(多功能性)的能力。相反,在景观尺度上生物多样性在推动生态系统多功能性方面的作用尚未得到解决。我们使用了一个全面的泛欧洲数据集,包括在六个欧洲国家/地区的209个森林地块中测得的16种生态系统功能,并进行了模拟研究,以研究当地树种的地域尺度丰富度(α-多样性)及其在地块之间的周转率(β-多样性)与景观尺度的多功能性有关。在考虑了环境条件的变化之后,我们发现,α-多样性和景观尺度多功能性之间的关系根据所使用的多功能性度量标准从正到负变化。相反,当显着时,β多样性与景观尺度多功能性之间的关系始终是正的,这是因为物种组成的高空间更新与高水平支持的功能的高空间更新紧密相关。我们的发现对森林管理具有重要意义,并表明生物同质化可能对大规模生态系统的多功能性产生以前无法认识的负面影响。

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