Stream Communities Along a Catchment Land-Use Gradient: Subsidy-Stress Responses to Pastoral Development

被引:0
作者
Dev K. Niyogi
Mark Koren
Chris J. Arbuckle
Colin R. Townsend
机构
[1] University of Otago,Department of Zoology
[2] University of Missouri-Rolla,Department of Biological Sciences
来源
Environmental Management | 2007年 / 39卷
关键词
Streams; Land cover; Land use; Macroinvertebrates; Stream health; Nutrients; Sedimentation;
D O I
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中图分类号
学科分类号
摘要
When native grassland catchments are converted to pasture, the main effects on stream physicochemistry are usually related to increased nutrient concentrations and fine-sediment input. We predicted that increasing nutrient concentrations would produce a subsidy-stress response (where several ecological metrics first increase and then decrease at higher concentrations) and that increasing sediment cover of the streambed would produce a linear decline in stream health. We predicted that the net effect of agricultural development, estimated as percentage pastoral land cover, would have a nonlinear subsidy-stress or threshold pattern. In our suite of 21 New Zealand streams, epilithic algal biomass and invertebrate density and biomass were higher in catchments with a higher proportion of pastoral land cover, responding mainly to increased nutrient concentration. Invertebrate species richness had a linear, negative relationship with fine-sediment cover but was unrelated to nutrients or pastoral land cover. In accord with our predictions, several invertebrate stream health metrics (Ephemeroptera–Plecoptera–Trichoptera density and richness, New Zealand Macroinvertebrate Community Index, and percent abundance of noninsect taxa) had nonlinear relationships with pastoral land cover and nutrients. Most invertebrate health metrics usually had linear negative relationships with fine-sediment cover. In this region, stream health, as indicated by macroinvertebrates, primarily followed a subsidy-stress pattern with increasing pastoral development; management of these streams should focus on limiting development beyond the point where negative effects are seen.
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页码:213 / 225
页数:12
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共 96 条
[1]  
Allan J. D.(2004)Landscapes and riverscapes: The influence of land use on stream ecosystems Annu Rev Ecol Evolut Syst 35 257-284
[2]  
Angradi T. R.(1999)Fine sediment and macroinvertebrate assemblages in Appalachian streams: A field experiment with biomonitoring applications J North Am Benthol Soc 18 49-66
[3]  
Benjamini Y.(1995)Controlling the false discovery rate: A practical and powerful approach to multiple testing J R Statist Soc B 57 289-300
[4]  
Hochberg Y.(1989)Periphyton biomass dynamics in gravel bed rivers: The relative effects of flows and nutrients Freshwater Biol 22 209-231
[5]  
Biggs B. J. F.(1999)Velocity and sediment disturbance of periphyton in headwater streams: Biomass and metabolism J North Am Benthol Soc 18 222-241
[6]  
Close M. E.(2004)Scale-dependence of land use effects on water quality of streams in agricultural catchments Environl Pollut 130 287-2991
[7]  
Biggs B. J. F.(2000)Thermal tolerances of two stream invertebrates exposed to diurnally varying temperature NZ J Marine Freshwater Res 34 203-208
[8]  
Smith R. A.(1999)Changes in agricultural intensity and river health along a river continuum Freshwater Biol 42 345-357
[9]  
Duncan M. J.(1999)Assessing biotic integrity of streams: Effects of scale in measuring the influence of land use/cover and habitat structure on fish and macroinvertebrates Environ Manage 23 257-270
[10]  
Buck O.(1981)Variable effects of sediment addition on stream benthos Hydrobiologia 79 187-194