Salmon and Steelhead Conservation through adaptive management of water levels in the Jenner estuary NOAA’S National Marine Fisheries Service.

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Salmon and Steelhead Conservation through adaptive management of water levels in the Jenner estuary NOAA’S National Marine Fisheries Service

Tributary Mainstem Estuary Pacific Ocean Conceptual Map of the Russian River watershed Tributary Mainstem

Why the decline in salmon and steelhead populations? Habitat Degradation Sedimentation Water Diversions Channelization Water Quality Impairment Ocean Warming Impaired estuary function Roads Agriculture Timber Harvest Rural and Urban Development Dams Flood Control Projects Climate Change Causes

Estuary Dynamics and Management OceanEstuary 1. In Mediterranean climates, barrier beaches naturally close estuaries to form lagoons

Estuary Dynamics and Management OceanEstuary Sand 1. In Mediterranean climates, barrier beaches naturally close estuaries to form lagoons

Estuary Dynamics and Management OceanEstuary 1. In Mediterranean climates, barrier beaches naturally close estuaries to form lagoons Flow

Estuary Dynamics and Management 2. When barrier beaches close, estuaries become freshwater lagoons or low salinity brackish systems (oligohaline) Freshwater High Salinity Inflow Low Salinity Flow

Estuary Dynamics and Management 2. When barrier beaches close, perched estuaries become primarily freshwater lagoons… High Salinity Inflow Low Salinity Freshwater Flow

Estuary Dynamics and Management 2. When barrier beaches close, perched estuaries become primarily freshwater lagoons… High Salinity Low Salinity Freshwater Inflow Flow

Estuary Dynamics and Management 3. Given moderate natural inflows, lagoons form highly productive rearing habitats for steelhead and salmon In Scott Creek: “While comprising less than 5% of the total stream area, the estuary may be the most important habitat for steelhead growth in this watershed“ (Hayes et al. 2008) In Pescadero, San Gregorio, and Waddell Creeks: “The high numbers and/or large sizes of steelhead reared in the lagoons during years of freshwater conversion demonstrate that these lagoons can potentially contribute the majority of steelhead smolts produced in these small coastal watersheds.” (Smith 1990)

River/CreekEstuary TypeArea (1000 m 2 ) Steelhead Density (#/m 2 ) Reference ScottFreshwater80.25Bond 2006 MattoleFreshwater Zedonis 1992 PescaderoFreshwater/ Stratified Smith 1990 San GregorioFreshwater430.25Smith 1990 WaddellFreshwater180.67Smith 1990 Navarro*Stratified Cannata 1998 RussianManaged as open – saline 585Very lowSCWA 2006 Garcia*Open – largely saline 200Very lowHiggins 1995 AlbionOpen – largely saline 160Very lowMaahs and Cannata 1998 SmithOpen – largely saline 1, Quinones and Mulligan 2005

Estuary Dynamics and Management Estuary Dynamics and Management 4. A disproportionately large number of adult steelhead returning from the ocean are reared in freshwater lagoons. In Scott Creek: “Estuary reared steelhead show a large survival advantage and comprise 85% of the returning adult population, despite being between 8% and 48% of the juvenile population” (Bond 2006) “The majority of fish reaching typical steelhead ocean entry sizes were estuary-lagoon reared, which indicates a disproportionate contribution of this habitat type to survival of Scott Creek steelhead.” (Hayes et al. 2008)

Recovery of Species Restoration of Viable Populations Viable populations: Good Abundance Good population growth rate Good population spatial structure healthy genetic & ecological diversity