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首页> 外文期刊>Marine ecology progress series >Resistance of benthic intertidal communities to multiple disturbances and stresses
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Resistance of benthic intertidal communities to multiple disturbances and stresses

机译:底栖潮间带群落对多种干扰和压力的抵抗力

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Many ecosystems are facing biodiversity loss and environmental change due to anthropogenic activities, with these impacts occurring within the context of natural disturbance. Understanding ecosystem functioning and the response of communities to these impacts is necessary in order to evaluate the effects of future environmental change. The aim of this study was to determine the consequences of the loss of key species on the structure and function of intertidal communities in a context of nutrient enrichment, so as to ascertain the resistance of these communities when disturbance and stresses are compounded. Subarctic rocky intertidal communities in Quebec were subjected to an orthogonal factorial field experiment with 3 stress factors (macro-algae canopy loss, grazer exclusion, and nutrient enrichment), each with 2 disturbance levels. Simple and interactive effects of these factors were followed for 4 mo, and responses in structure (% cover and biomass) and productivity were evaluated. The communities that were not subjected to canopy loss showed greater resistance and very limited effects from enrichment and grazer reduction. The loss of canopy altered the community structure (e.g. reduction in richness and biomass) and functioning (reduced productivity), probably due to increased temperatures and desiccation. This lack of resistance was amplified through the addition of a stress. The application of multiple stresses within field experiments allows for a better understanding of the mechanisms affecting community structure and ecosystem functioning under situations of increased natural and anthropogenic stress.
机译:由于人类活动,许多生态系统面临生物多样性丧失和环境变化,这些影响发生在自然干扰的背景下。为了评估未来环境变化的影响,有必要了解生态系统的功能以及社区对这些影响的反应。这项研究的目的是确定在营养富集的情况下关键物种丧失对潮间带群落结构和功能的影响,以便确定扰动和胁迫加重时这些群落的抵抗力。对魁北克的弧下岩石潮间带群落进行了正交因子场试验,该试验具有3个应力因子(宏藻冠层损失,放牧者排斥和营养富集),每个应力因子具有2个干扰水平。跟踪这些因素在4个月后的简单交互作用,并评估了结构(覆盖率和生物量%)和生产率的响应。未遭受冠层损失的社区表现出更大的抵抗力,而富集和放牧者减少的影响却非常有限。冠层的丧失改变了群落结构(例如,丰富度和生物量的减少)和功能(生产力降低),这可能是由于温度升高和干燥造成的。通过增加压力可以增强这种电阻的缺乏。在野外试验中施加多种压力可以更好地理解在自然和人为压力增加的情况下影响群落结构和生态系统功能的机制。

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