HR: 08:30h
AN: NB21G-01 INVITED [Abstracts]
TI: An Experimental Approach for Restoration of Salmon River Ecosystems
AU: * Stanford, J A
EM: jack.stanford@umontana.edu
AF: Flathead Lake Biological Station, The University of Montana, 311 Bio Station Lane, Polson, MT
59860-9659 United States
AB:
River ecosystem theory predicts that dynamic, nonlinear physical and biological processes linking water, heat and materials
(biota, sediment, plant-growth nutrients) flux and retention to fluvial landscape change in a habitat mosaic context drive
salmon life histories and productivity in freshwater. Multidisciplinary studies and cross-site comparisons within a network
of pristine salmon river observatories around the north Pacific Rim support these predictions. Billions of dollars have been spent on salmon-river restoration worldwide to little avail, mainly because salmon biology, rather than ecosystem process
boundaries and bottlenecks, is driving restoration goals. I argue that entire river catchment restoration, in relation to
these dynamic processes and bottlenecks and also coherent with the estuarine and marine implications of salmon life history
parameters, is the only possibility for sustaining or restoring natural productivity and life history (genetic) diversity in
salmon rivers. This can be done only in a few places owing to the continual press of human demands on river ecosystems, the
morass of legal challenges to proactive salmon river restoration strategies and insufficient understanding of freshwater and
marine linkages. The Elwha and Yakima Rivers in Washington, among a few others that I will name, offer real opportunities to restore entire watersheds for wild salmon. These restorations should be viewed as experimental manipulations in which
outcomes may be evaluated against norms measured in the salmon river observatory network. Bias from hatcheries and harvest,
among other anthropogenic interferences, must be eliminated for such experiments to be evaluated in light of contemporary
river ecosystem theory. And, a much more synthetic understanding of freshwater and marine linkages must be forthcoming in
concert with a much more robust general theory of river restoration.
DE: 1845 Limnology
DE: 4815 Ecosystems, structure and dynamics
SC: North American Benthological Society [NB]
MN: 2005 Joint Assembly