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大规模的林冠损失和干扰对群落结构和生态系统功能的综合影响变化。

Large-scale variation in combined impacts of canopy loss and disturbance on community structure and ecosystem functioning.

机构信息

School of Biology and Environmental Science, University College Dublin, Dublin, Ireland.

出版信息

PLoS One. 2013 Jun 14;8(6):e66238. doi: 10.1371/journal.pone.0066238. Print 2013.

Abstract

Ecosystems are under pressure from multiple human disturbances whose impact may vary depending on environmental context. We experimentally evaluated variation in the separate and combined effects of the loss of a key functional group (canopy algae) and physical disturbance on rocky shore ecosystems at nine locations across Europe. Multivariate community structure was initially affected (during the first three to six months) at six locations but after 18 months, effects were apparent at only three. Loss of canopy caused increases in cover of non-canopy algae in the three locations in southern Europe and decreases in some northern locations. Measures of ecosystem functioning (community respiration, gross primary productivity, net primary productivity) were affected by loss of canopy at five of the six locations for which data were available. Short-term effects on community respiration were widespread, but effects were rare after 18 months. Functional changes corresponded with changes in community structure and/or species richness at most locations and times sampled, but no single aspect of biodiversity was an effective predictor of longer-term functional changes. Most ecosystems studied were able to compensate in functional terms for impacts caused by indiscriminate physical disturbance. The only consistent effect of disturbance was to increase cover of non-canopy species. Loss of canopy algae temporarily reduced community resistance to disturbance at only two locations and at two locations actually increased resistance. Resistance to disturbance-induced changes in gross primary productivity was reduced by loss of canopy algae at four locations. Location-specific variation in the effects of the same stressors argues for flexible frameworks for the management of marine environments. These results also highlight the need to analyse how species loss and other stressors combine and interact in different environmental contexts.

摘要

生态系统承受着多种人类干扰的压力,其影响可能因环境背景而异。我们在欧洲九个地点进行了实验,评估了关键功能群(藻层)丧失和物理干扰对岩石海岸生态系统的单独和综合影响的变化。在最初的三到六个月内,有六个地点的多变量群落结构受到了影响,但在 18 个月后,只有三个地点出现了影响。藻层的丧失导致了南部三个地点非藻层藻类覆盖度的增加,而在一些北部地点则减少了。在有数据的六个地点中的五个地点,生态系统功能(群落呼吸、总初级生产力、净初级生产力)受到了藻层丧失的影响。在短期,群落呼吸的影响是广泛的,但在 18 个月后,这种影响很少见。在大多数采样地点和时间,功能变化与群落结构和/或物种丰富度的变化相对应,但没有一个单一的生物多样性方面是长期功能变化的有效预测指标。大多数研究的生态系统在功能上能够补偿由无差别物理干扰造成的影响。干扰的唯一一致影响是增加了非藻层物种的覆盖度。在只有两个地点,藻层丧失暂时降低了群落对干扰的抵抗力,而在两个地点实际上增加了抵抗力。在四个地点,藻层丧失降低了抵抗因总初级生产力变化引起的干扰的能力。相同胁迫因素的位置特异性影响表明,海洋环境的管理需要灵活的框架。这些结果还强调了需要分析物种丧失和其他胁迫因素如何在不同的环境背景下组合和相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9a4/3683006/240aa9588cda/pone.0066238.g001.jpg

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