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Ecological response to hydrological variability and catchment development: Insights from a shallow oxbow lake in Lower Mississippi Valley, Arkansas.
Bhattacharya, Ruchi; Hausmann, Sonja; Hubeny, J Bradford; Gell, Peter; Black, Jessica L.
Afiliación
  • Bhattacharya R; Environmental Dynamics, Department of Geosciences, University of Arkansas, Fayetteville, AR 72701, USA. Electronic address: ruchi.bhattacharya@gmail.com.
  • Hausmann S; Academy of Natural Sciences of Drexel University, Philadelphia, PA 19103, USA. Electronic address: tonisonja42@gmail.com.
  • Hubeny JB; Department of Geological Sciences, Salem State University, Salem, MA 01970, USA. Electronic address: bhubeny@salemstate.edu.
  • Gell P; Faculty of Science and Technology, Federation University Australia, Ballarat, Australia. Electronic address: p.gell@federation.edu.au.
  • Black JL; Heritage University, Toppenish, WA 98948, USA.
Sci Total Environ ; 569-570: 1087-1097, 2016 Nov 01.
Article en En | MEDLINE | ID: mdl-27401277
ABSTRACT
The ecological response of shallow oxbow lakes to variability in hydrology and catchment development in large river floodplain ecosystems (RFE) in Arkansas remains largely unknown. Investigating these responses will advance our understanding of ecological evolution of oxbow lakes in response to the major environmental drivers, which will establish baseline conditions required to develop effective management practices for RFE. In this pilot study, we examined the potential of using a dated surface sediment core from Adams Bayou, a floodplain lake located within the Cache-Lower White River Ramsar site in SE Arkansas. Stratigraphic records of diatoms and sediment geochemistry were used to ascertain variation in Adams Bayou's ecological condition. During 1968-2008, in response to hydrological and anthropogenic changes, Adams Bayou's diatom assemblages progressed from predominantly benthic (Gomphonema parvulum and Meridion circulare) to primarily planktonic assemblage (Aulacoseira granulata and Cyclotella meneghiniana), along with a decrease in magnetic susceptibility (k) and % silt. Statistical analyses reveled that during 1968-2000, higher hydrological connectivity and catchment alterations drove Adams Bayou's ecosystem. After 2000, lower hydrological connectivity and increase in cultivation were the major drivers. The potential impact of increasing air temperature was also noted. The shift in Adams Bayou from a connected, clear, mesotrophic state to a relatively isolated, turbid and nutrient enriched state is consistent with regime shift models and highlights its sensitivity to a combination of environmental stresses prevalent in the catchment. Although fluvial systems pose challenges in establishing clear chronologies, oxbow lake sediments can be a effective paleoecological archives. Our work provides clear evidence for the change in the ecological character of this wetland of international significance and flags the need for a wider assessment of water bodies across this site under obligations to the Ramsar Convention.
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Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Sci Total Environ Año: 2016 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Sci Total Environ Año: 2016 Tipo del documento: Article