4.2 Article

Eutrophication and retention time affecting spatial heterogeneity in a tropical reservoir

期刊

LIMNOLOGICA
卷 42, 期 3, 页码 197-203

出版社

ELSEVIER GMBH
DOI: 10.1016/j.limno.2011.11.002

关键词

Cyanobacterial bloom; Cylindrospermopsis; Dolichospermum; Microcystis; Longitudinal zonation

资金

  1. CAPES (Foundation for the Coordination of Higher Education and Graduate Training)
  2. FAPERJ (Research Support Foundation of Rio de Janeiro State)
  3. FUNASA (National Health Foundation)
  4. CNPq (National Council for Research and Development)

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Longitudinal heterogeneity in reservoirs is especially related to increase in sedimentation and water transparency along the river/dam axis. Consequently, primary production tends to reach higher values in intermediate regions where there is a balance between the availability of the main resources (light and nutrients) suitable for phytoplankton growth. Many factors such as reservoir morphometry, retention time, thermal stratification and geographical location can affect the boundaries between these regions. The tropical Funil Reservoir (Brazil), despite a low retention time, has experienced severe eutrophication in recent decades, with persistent cyanobacteria blooms. During the course of 1 year, samples were collected at four stations along the reservoir (fluvial, intermediate and lentic compartments) to evaluate if spatial heterogeneity could affect the occurrence and distribution of these blooms along the reservoir. Although the reservoir has a short annual retention time (mean 41.5 days), the typical zonation pattern was observed for the main abiotic variables and phytoplankton abundance. However, higher biomass occurred in the lentic compartment rather than in the intermediate zone. Despite the peculiar heterogeneity in total biomass, the phytoplankton composition and seasonal variability were very similar along the entire reservoir, with a few marked differences only in the fluvial zone. Phytoplankton total biomass in Funil Reservoir was high, even in periods of lower seasonal retention time (around 15 days), and was especially related to high input of nutrients. Moreover, retention time directly affects the spatial heterogeneity of phytoplankton biomass, since strong variability was only observed during the cold-dry season, corresponding to periods of longer retention time (around 80 days). While high availability of nutrients promoted high cyanobacterial biomass in the entire system, the few periods of heterogeneous spatiality seemed to be related to changes in retention time. (C) 2012 Elsevier GmbH. All rights reserved.

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