4.5 Article

NUTRIENT LIMITATION OF ALGAL PERIPHYTON IN STREAMS ALONG AN ACID MINE DRAINAGE GRADIENT

Journal

JOURNAL OF PHYCOLOGY
Volume 51, Issue 4, Pages 739-749

Publisher

WILEY-BLACKWELL
DOI: 10.1111/jpy.12315

Keywords

acid mine drainage; benthic algae; iron precipitate; metal oxyhydroxides; nitrogen; nutrient diffusing substrata; nutrient limitation; passive treatment; periphyton; phosphorus

Funding

  1. George Smith Grant through Slippery Rock University
  2. SURE grant through Slippery Rock University

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Metal oxyhydroxide precipitates that form from acid mine drainage (AMD) may indirectly limit periphyton by sorbing nutrients, particularly P. We examined effects of nutrient addition on periphytic algal biomass (chl a), community structure, and carbon and nitrogen content along an AMD gradient. Nutrient diffusing substrata with treatments of +P, +NP and control were placed at seven stream sites. Conductivity and SO4 concentration ranged over an order of magnitude among sites and were used to define the AMD gradient, as they best indicate mine discharge sources of metals that create oxyhydroxide precipitates. Aqueous total phosphorous (TP) ranged from 2 to 23 mu g . L-1 and significantly decreased with increasing SO4. Mean chl a concentrations at sites ranged from 0.2 to 8.1 mu g . cm(-2). Across all sites, algal biomass was significantly higher on +NP than control treatments (Co), and significantly increased with +NP. The degree of nutrient limitation was determined by the increase in chl a concentration on +NP relative to Co (response ratio), which ranged from 0.6 to 9.7. Response to nutrient addition significantly declined with increasing aqueous TP, and significantly increased with increasing SO4. Thus, nutrient limitation of algal biomass increased with AMD impact, indicating metal oxyhydroxides associated with AMD likely decreased P availability. Algal species composition was significantly affected by site but not nutrient treatment. Percent carbon content of periphyton on the Co significantly increased with AMD impact and corresponded to an increase in the relative abundance of Chlorophytes. Changes in periphyton biomass and cellular nutrient content associated with nutrient limitation in AMD streams may affect higher trophic levels.

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