HR: 09:00h
AN: NB11A-03 [Abstracts]
TI: Morning, Noon and Night: DOM, Photochemistry and the River Continuum
AU: * McKnight, D
EM: diane.mcknight@colorado.edu
AF: University of Colorado, 1560 30th st, Boulder, CO 80309 United States
AB:
The role of light in structuring stream ecosystems is a major theme of the River Continuum Concept (RCC). A specific
hypothesis was that the chemical diversity of dissolved organic material (DOM) increases downstream as the production of DOM
by phototrophs (algae and macrophytes) contributes to DOM coming from runoff of forested catchments. Studies have shown that
direct photochemical processes influence the chemistry of the DOM pool, changing its bioavailability and its reactivity with
trace metal and organic contaminants. Recent research has shown that a major DOM fraction, fulvic acid, can be used as
electron acceptors by heterotrophic microorganisms in reducing environments and that reduced fulvic acid can then be used as
an energy source by other microorganisms. The hydrologic transport of reduced DOM from reducing environments, such as
hyporheic zones, to oxidizing environments in streams may influence ecosystem function. Thus, the chemical diversity and
biogeochemical reactivity of DOM in stream ecosystems are dynamic, with changes occurring over a day-night cycle being
superimposed upon seasonal changes in light regime and in hydrologic regime. Incorporating these dynamic processes into the
broad scale of the RCC may be useful in understanding the effects of changes in water quality, land use and hydrologic
regime.
DE: 0400 Biogeosciences
SC: North American Benthological Society [NB]
MN: 2005 Joint Assembly