Top Banner
Phytoplankton Dynamics Phytoplankton Dynamics Primary Productivity (g C/m Primary Productivity (g C/m 2 /yr) /yr) Gross (total) production = total C Gross (total) production = total C fixed fixed Net production = C remaining after Net production = C remaining after respiration respiration Standing crop = biomass present at Standing crop = biomass present at a point in a point in time time
23

Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Dec 23, 2015

Download

Documents

Jasmine Lewis
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Phytoplankton DynamicsPhytoplankton Dynamics

Primary Productivity (g C/mPrimary Productivity (g C/m22/yr)/yr)

Gross (total) production = total C fixedGross (total) production = total C fixed

Net production = C remaining after Net production = C remaining after respirationrespiration

Standing crop = biomass present at a Standing crop = biomass present at a point in point in time time

Page 2: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Factors Affecting Primary Factors Affecting Primary ProductionProduction

1.1. LightLight

2.2. NutrientsNutrients

3.3. Loss out of the photic zone due to Loss out of the photic zone due to sinking or mixingsinking or mixing

4.4. GrazingGrazing

Page 3: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

1. Light1. Light

Light penetration – affected byLight penetration – affected by– Angle of incidenceAngle of incidence– Surface reflectionSurface reflection– Suspended particlesSuspended particles– Adsorption by the water itselfAdsorption by the water itself

Page 4: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Water absorption of lightWater absorption of light

Page 5: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.
Page 6: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

DDCC = = Compensation Compensation depthdepth

At DAt DCC ---- ----

primary production primary production (P) = respiration (P) = respiration (R) in each algal (R) in each algal cell cell

IIC C = Compensation = Compensation light intensitylight intensity

Page 7: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.
Page 8: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

2. Nutrients2. Nutrients

• Nutrients = essential elements needed Nutrients = essential elements needed for cell maintenance and growthfor cell maintenance and growth

N, P, Si, Ca, K, etc.N, P, Si, Ca, K, etc.

• N and P in ocean water about 10,000 x N and P in ocean water about 10,000 x less than on land (“ocean desert”)less than on land (“ocean desert”)

• Redfield ratio C:N:P 105:16:1Redfield ratio C:N:P 105:16:1

same in seawater and pp cellsame in seawater and pp cell

Page 9: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

• Body form of pp adapted for nutrient Body form of pp adapted for nutrient uptakeuptake

• Rate of uptake is concentration Rate of uptake is concentration dependentdependent

low nutrient specieslow nutrient species – very efficient – very efficient at nutrient uptake in low concentrations, at nutrient uptake in low concentrations, but rate saturates out at high but rate saturates out at high concentrationsconcentrations

high nutrient specieshigh nutrient species – less efficient – less efficient uptake at low concentrations, but can uptake at low concentrations, but can exploit high concentrationsexploit high concentrations

Page 10: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

3. Loss out of the photic 3. Loss out of the photic zonezone• SinkingSinking• Water turbulence mixes plankton Water turbulence mixes plankton

deeper into the water columndeeper into the water column

DDMM = mixing depth = mixing depth

Vertical mixing can take plankton Vertical mixing can take plankton below the compensation depthbelow the compensation depth

Page 11: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

DDCC = compensation depth, = compensation depth,

(P = R in each pp cell)(P = R in each pp cell)

DDCR CR = critical depth, = critical depth,

(P = R in whole pp (P = R in whole pp population)population)

DDMM < D < DCRCR P PWW > R > RWW

DDMM > D > DCRCR P PWW < R < RWW

Page 12: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

4. Grazing4. Grazing

• Copepods can have extremely high Copepods can have extremely high grazing ratesgrazing rates

GR < PGR < PWW

GR = PGR = PWW

GR > PGR > PWW

Page 13: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.
Page 14: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

WinterWinter

SpringSpring

SummerSummer

FallFall

Page 15: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

DDCRCR moves up in the water column moves up in the water column – photic zone smaller– photic zone smaller

Page 16: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

What happens in late What happens in late spring/early summer?spring/early summer?

Page 17: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Zooplankton – grow and Zooplankton – grow and reproduce in spring, GR??reproduce in spring, GR??

Page 18: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Spring Spring Summer Summer

FallFall

Magnitude of fall Magnitude of fall bloombloom

-- timing, when -- timing, when DDMM falls below falls below

DDCRCR

Page 19: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Idealized ChartIdealized Chart

Page 20: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Why are the Why are the polar oceans polar oceans different?different?

Light in Light in springspring

No No thermoclinethermocline

Grazing?Grazing?

Page 21: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Why are the Why are the tropical tropical oceans oceans different?different?

Permanent Permanent thermoclinethermocline

Nutrients Nutrients always lowalways low

Blips?Blips?

Page 22: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

What’s What’s different different between the between the Atlantic and Atlantic and Pacific? Pacific?

Copepod life Copepod life history – history –

lag timelag time

Page 23: Phytoplankton Dynamics Primary Productivity (g C/m 2 /yr) Gross (total) production = total C fixed Net production = C remaining after respiration Standing.

Coast vs. Open OceanCoast vs. Open Ocean

• Coast receives nutrients from landCoast receives nutrients from land• Upwelling Upwelling • Shallow water depth – bottom Shallow water depth – bottom

shallower than the Dshallower than the DCRCR

• Thermocline not as well developed Thermocline not as well developed or persistentor persistent

• Turbidity of water Turbidity of water can can counteract counteract other factorsother factors