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厘清北方溪流生物群落对弥散性污染低胁迫水平和河道形态改变的响应。

Disentangling the responses of boreal stream assemblages to low stressor levels of diffuse pollution and altered channel morphology.

机构信息

Finnish Environment Institute, Freshwater Centre, PO Box 413, 90014 Oulu, Finland; Department of Ecology, PO Box 3000, 90014, University of Oulu, Finland.

Department of Ecology, PO Box 3000, 90014, University of Oulu, Finland; Finnish Environment Institute, Natural Environment Centre, PO Box 413, 90014 Oulu, Finland.

出版信息

Sci Total Environ. 2016 Feb 15;544:954-62. doi: 10.1016/j.scitotenv.2015.12.031. Epub 2015 Dec 17.

Abstract

Non-point diffuse pollution from land use and alteration of hydromorphology are among the most detrimental stressors to stream ecosystems. We explored the independent and interactive effects of morphological channel alteration (channelization for water transport of timber) and diffuse pollution on species richness and community structure of four organism groups in boreal streams: diatoms, macrophytes, macroinvertebrates, and fish. Furthermore, the effect of these stressors on stream condition was evaluated by Ecological Quality Ratios (EQR) from the national Water Framework Directive (WFD) assessment system. We grouped 91 study sites into four groups that were impacted by either diffuse pollution or hydromorphological alteration, by both stressors, or by neither one. Macroinvertebrate richness was reduced by diffuse pollution, whereas other biological groups were unaltered. Hydromorphological modification had no effect on taxon richness of any of the assemblages. Community structure of all groups was significantly affected by diffuse pollution but not by hydromorphology. Similarly, EQRs indicated negative response by diatoms, macroinvertebrates and fish to diffuse pollution, but not to hydromorphological alteration. Agricultural diffuse pollution thus affected species identities and abundances rather than taxonomic richness. Our results suggest that channelization of boreal streams for timber transport has not altered hydromorphological conditions sufficiently to have a strong impact on stream biota, whereas even moderate nutrient enrichment may be ecologically harmful. Controlling diffuse pollution and associated land use stressors should be prioritized over restoration of in-stream habitat structure to improve the ecological condition of boreal streams.

摘要

土地利用和水文形态改变导致的非点源扩散污染是对溪流生态系统危害最大的压力因素之一。我们探讨了形态学河道改变(木材水运的河道渠化)和扩散污染对北方溪流中四个生物群的物种丰富度和群落结构的独立和交互影响:硅藻、大型植物、大型无脊椎动物和鱼类。此外,还通过国家水框架指令(WFD)评估系统的生态质量比(EQR)来评估这些压力因素对溪流状况的影响。我们将 91 个研究点分为四组,分别受到扩散污染或水文形态改变、两者共同作用或两者均未受到影响。扩散污染减少了大型无脊椎动物的丰富度,而其他生物群则没有变化。水文形态的改变对任何一组的分类丰富度都没有影响。所有群体的群落结构都受到扩散污染的显著影响,但不受水文形态的影响。同样,EQR 表明,扩散污染对硅藻、大型无脊椎动物和鱼类的群落结构产生了负面影响,但对水文形态的改变没有影响。因此,农业扩散污染影响了物种的存在和丰度,而不是分类丰富度。我们的研究结果表明,北方溪流的木材运输渠道化并没有改变足够的水文形态条件,对溪流生物群产生强烈影响,而即使是适度的养分富集也可能对生态有害。控制扩散污染和相关的土地利用压力因素应优先于恢复溪流生境结构,以改善北方溪流的生态状况。

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