Title: Marine Food Chains/Webs
1Marine Food Chains/Webs
- Energy from primary production is transferred up
the trophic chain - Each step is inefficient (90 energy is lost)
- Shorter chains are more efficient at producing
apex predators
2Bottom Up Control on the Marine Food Webs
hn
CO2
O2
Phytoplankton
Food Web
Plants
NUTS
Primary Secondary Production
Production
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5Marine Food Chains/Webs
- Energy from primary production is transferred up
the trophic chain - Each step is inefficient (90 energy is lost)
- Shorter chains are more efficient at producing
apex predators
6Primary Production by Biome
Ryther (1969) Science
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8Primary Production by Biome
Ryther (1969) Science
9Marine Food Chains/Webs
- Open ocean 90 area most of the NPP but
little fish production - Coastal ocean 9.9 area 20 of the global NPP
but ½ of the fish production - Upwelling systems 0.1 area little NPP but ½
fish production
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12CalCoFI Zooplankton Sampling
13CalCoFIZooplankton
Dudley Chelton OSU
14Seasonal Zooplankton
Zoo Winds
15Seasonal Zooplankton
Zoo Winds
16CalCoFI Zooplankton
Highest in the tongue of CA Current
17The Upwelling Conveyor Belt
High Zoo
Low Zoo
Lower Zoo
High Chl
Low Chl
Lower Chl
High NUTS
Low NUTS
Sinking POM
Highest NUTS
18CalCoFI Zooplankton
Corresponds to low salinity waters from north
19CalCoFI Zooplankton
Highest in the tongue of CA Current
20The Upwelling Conveyor Belt
High Zoo
Low Zoo
Lower Zoo
High Chl
Low Chl
Lower Chl
High NUTS
Low NUTS
Sinking POM
Highest NUTS
21CalCoFIZooplankton
Hi Zoos Low Temp ENSO connection All in
pre-1977
22CalCoFI Zooplankton
70 Decline in 1970s
23The 1977 Regime Shift
McGowan et al, 1998 Climate-Ocean Variability
and Ecosystem Response in the Northeast Pacific,
Science
24Cool vs. WarmWater Species
T. Spinifera cool water N. Simplex warm
25Cool water species gone during ENSO
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30Zooplankton in CA Current
- Zooplankton follow climatic changes both ENSO and
PDO are seen - Long term zoo distribution consistent with
upwelling conveyor advection from N Pac - Evidence of species switching is also observed