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首页> 外文期刊>Oecologia >Placing biodiversity and ecosystem functioning in context: environmental perturbations and the effects of species richness in a stream field experiment
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Placing biodiversity and ecosystem functioning in context: environmental perturbations and the effects of species richness in a stream field experiment

机译:将生物多样性和生态系统功能置于特定环境中:流域实验中的环境扰动和物种丰富度的影响

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Greater biodiversity is often associated with increased ecosystem process rates, and is expected to enhance the stability of ecosystem functioning under abiotic stress. However, these relationships might themselves be altered by environmental factors, complicating prediction of the effects of species loss in ecosystems subjected to abiotic stress. In boreal streams, we investigated effects of biodiversity and two abiotic perturbations on three related indices of ecosystem functioning: leaf decomposition, detritivore leaf processing efficiency (LPE) and detritivore growth. Replicate field enclosures containing leaves and detritivore assemblages were exposed to liming and nutrient enrichment, raising pH and nutrient levels. Both treatments constitute perturbations for our naturally acidic and nutrient-poor streams. We also varied detritivore species richness and density. The effects of the abiotic and diversity manipulations were similar in magnitude, but whereas leaf decomposition increased by 18% and 8% following liming and nutrient enrichment, respectively, increased detritivore richness reduced leaf decomposition (6%), detritivore LPE (19%) and detritivore growth (12%). The detritivore richness effect on growth was associated with negative trait-independent complementarity, indicating interspecific interference competition. These interactions were apparently alleviated in both enriched and limed enclosures, as trait-independent complementarity became less negative. LPE increased with detritivore density in the monocultures, indicating benefits of intra-specific aggregation that outweighed the costs of intra-specific competition, and dilution of these benefits probably contributed to lowered leaf decomposition in the species mixtures. Finally, the effects of liming were reduced in most species mixtures relative to the monocultures. These results demonstrate how environmental changes might regulate the consequences of species loss for functioning in anthropogenically perturbed ecosystems, and highlight potential influences of biodiversity on functional stability. Additionally, the negative effects of richness and positive effects of density in our field study were opposite to previous laboratory observations, further illustrating the importance of environmental context for biodiversity–ecosystem functioning relationships. Keywords Density dependence - Diversity–stability - Intra-specific aggregation - Multiple stressors - Statistical averaging Communicated by Barbara Downes.
机译:更大的生物多样性通常与提高的生态系统过程速率有关,并有望增强非生物胁迫下生态系统功能的稳定性。但是,这些关系本身可能会受到环境因素的影响,从而使对遭受非生物胁迫的生态系统中物种丧失的影响的预测变得复杂。在北方河流中,我们调查了生物多样性和两种非生物扰动对生态系统功能的三个相关指标的影响:叶片分解,有害生物叶片加工效率(LPE)和有害生物生长。复制的包含叶和有害生物组合的田间围栏暴露于石灰和养分富集之下,从而提高了pH和养分含量。两种处理方式都会对我们的天然酸性和营养贫乏的水流造成干扰。我们还改变了多种有害物种的丰富度和密度。非生物和多样性操作的效果在幅度上相似,但是在浸液和营养富集后,叶片分解分别增加了18%和8%,增加的杀真菌剂丰富度减少了叶片分解(6%),减少的LPE(19%)和有害增长(12%)。不利生长的富集效应与负性状无关的互补性有关,表明种间干扰竞争。由于特质无关的互补性变得越来越消极,这些相互作用显然在富集和灰蒙蒙的环境中都得到了缓解。 LPE在单一培养物中随有害菌密度的增加而增加,表明种内聚集的好处超过种内竞争的成本,而这些好处的稀释可能有助于降低物种混合物中叶片的分解。最后,与单一培养相比,大多数物种混合物的浸灰效果均降低。这些结果表明环境变化如何调节物种丧失对人为干扰的生态系统功能的影响,并突出了生物多样性对功能稳定性的潜在影响。另外,在我们的实地研究中,丰富度的负面影响和密度的正面影响与以前的实验室观察相反,进一步说明了环境背景对于生物多样性与生态系统功能关系的重要性。关键词密度依赖性-多样性-稳定性-种内聚集-多个应激源-统计平均由Barbara Downes传达。

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