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Estuarine fish communities respond to climate variability over both river and ocean basins
Authors:Frederick Feyrer  James E. Cloern  Larry R. Brown  Maxfield A. Fish  Kathryn A. Hieb  Randall D. Baxter
Affiliation:1. California Water Science Center, U.S. Geological Survey, Sacramento, CA, USA;2. U.S. Geological Survey, Menlo Park, CA, USA;3. California Department of Fish and Wildlife, Sacramento, CA, USA;4. California Department of Fish and Wildlife, Stockton, CA, USA
Abstract:Estuaries are dynamic environments at the land–sea interface that are strongly affected by interannual climate variability. Ocean–atmosphere processes propagate into estuaries from the sea, and atmospheric processes over land propagate into estuaries from watersheds. We examined the effects of these two separate climate‐driven processes on pelagic and demersal fish community structure along the salinity gradient in the San Francisco Estuary, California, USA. A 33‐year data set (1980–2012) on pelagic and demersal fishes spanning the freshwater to marine regions of the estuary suggested the existence of five estuarine salinity fish guilds: limnetic (salinity = 0–1), oligohaline (salinity = 1–12), mesohaline (salinity = 6–19), polyhaline (salinity = 19–28), and euhaline (salinity = 29–32). Climatic effects propagating from the adjacent Pacific Ocean, indexed by the North Pacific Gyre Oscillation (NPGO), affected demersal and pelagic fish community structure in the euhaline and polyhaline guilds. Climatic effects propagating over land, indexed as freshwater outflow from the watershed (OUT), affected demersal and pelagic fish community structure in the oligohaline, mesohaline, polyhaline, and euhaline guilds. The effects of OUT propagated further down the estuary salinity gradient than the effects of NPGO that propagated up the estuary salinity gradient, exemplifying the role of variable freshwater outflow as an important driver of biotic communities in river‐dominated estuaries. These results illustrate how unique sources of climate variability interact to drive biotic communities and, therefore, that climate change is likely to be an important driver in shaping the future trajectory of biotic communities in estuaries and other transitional habitats.
Keywords:climate variability  demersal  estuary salinity zones  fish assemblage  freshwater outflow  North Pacific Gyre Oscillation  pelagic  San Francisco Estuary
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