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Plant diversity and ecosystem multifunctionality peak at intermediate levels of woody cover in global drylands

机译:在全球干旱地区,木本植物覆盖度处于中间水平,植物多样性和生态系统多功能性达到顶峰

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摘要

Aim The global spread of woody plants into grasslands is predicted to increase over the coming century. While there is general agreement regarding the anthropogenic causes of this phenomenon, its ecological consequences are less certain. We analysed how woody vegetation of differing cover affects plant diversity (richness and evenness) and the surrogates of multiple ecosystem processes (multifunctionality) in global drylands, and how these change with aridity. Location Two hundred and twenty-four dryland sites from all continents except Antarctica, widely differing in their environmental conditions (from arid to dry-subhumid sites) and relative woody cover (from 0 to 100). Methods Using a standardized field survey, we measured the cover, richness and evenness of perennial vegetation. At each site, we measured 14 soil variables related to fertility and the build-up of nutrient pools. These variables are critical for maintaining ecosystem functioning in drylands. Results Species richness and ecosystem multifunctionality were strongly related to woody vegetation, with both variables peaking at a relative woody cover (RWC) of 41–60. This relationship shifted with aridity. We observed linear positive effects of RWC in dry-subhumid sites. These positive trends shifted to hump-shaped RWC–diversity and multifunctionality relationships under semi-arid environments. Finally, hump-shaped (richness, evenness) or linear negative (multifunctionality) effects of RWC were found under the most arid conditions. Main conclusions Plant diversity and multifunctionality peaked at intermediate levels of woody cover, although this relationship became increasingly positive in wetter environments. This comprehensive study accounts for multiple ecosystem attributes across a range of levels of woody cover and environmental conditions. Our results help us to reconcile contrasting views of woody encroachment found in the current literature and can be used to improve predictions of the likely effects of encroachment on biodiversity and ecosystem services.
机译:目的预计在下个世纪,木本植物在草原上的全球传播将会增加。尽管就这种现象的人为原因达成了普遍共识,但其生态后果尚不确定。我们分析了不同覆盖率的木本植被如何影响植物多样性(丰富度和均匀度)以及全球干旱地区多种生态系统过程(多功能性)的替代物,以及这些变化如何随干旱变化。位置除南极洲外,所有大陆的242个旱地站点的环境条件(从干旱到干燥半湿润的站点)和相对木本的覆盖范围(从0到100)差异很大。方法采用标准化的实地调查,我们测量了多年生植物的覆盖率,丰富度和均匀度。在每个地点,我们测量了14个与肥力和养分池积累有关的土壤变量。这些变量对于维持干旱地区的生态系统功能至关重要。结果物种丰富度和生态系统的多功能性与木本植物密切相关,两个变量均在41-60的相对木本覆盖率(RWC)达到峰值。这种关系随着干旱而转移。我们观察到RWC在干燥半湿润地区呈线性正效应。这些积极的趋势转变为半干旱环境下的驼峰形RWC-多样性和多功能关系。最后,在最干旱的条件下发现了RWC的驼峰状(丰富性,均匀性)或线性负面影响(多功能性)。主要结论尽管在潮湿的环境中这种关系变得越来越积极,但植物的多样性和多功能性在木质覆盖物的中间水平达到了顶峰。这项全面的研究考虑了一系列木质覆盖和环境条件下的多个生态系统属性。我们的结果有助于我们调和当前文献中关于木本虫侵害的不同观点,并且可以用于改进对生物侵害对生物多样性和生态系统服务的可能影响的预测。

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