energetic barriers of ecological systems ken locey

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Energetic barriers of Ecological Systems Ken Locey

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Page 1: Energetic barriers of Ecological Systems Ken Locey

Energetic barriers of Ecological Systems

Ken Locey

Page 2: Energetic barriers of Ecological Systems Ken Locey

Metabolic Theory of Ecology MTE

• Ecological phenomena are fundamentally influenced by metabolic rate– rates of development, population increase, times

to extinction, variations in lifespan and elevational diversity, nutrient cycling…

Page 3: Energetic barriers of Ecological Systems Ken Locey

Metabolic Theory of Ecology MTE

• Ecological phenomena are fundamentally influenced by metabolic rate

• Metabolic rate is fundamentally influenced by mass and temperature– Scaling relationships based on mass• I = ioM3/4

– Exponential effect of temperature on metabolic rate • Boltzmann factor: e-E/kt

Page 4: Energetic barriers of Ecological Systems Ken Locey

I = ioM3/4e-E/kt

M3/4 : based in delivery resources through fractal-like networks

Page 5: Energetic barriers of Ecological Systems Ken Locey

I = ioM3/4e-E/kt

• Boltzmann factor, e-E/kt based in the chemical kinetics of biochemical reactions

Page 6: Energetic barriers of Ecological Systems Ken Locey

Boltzmann factor, e-E/kT

• Increased temp. increases the fraction of molecules with sufficient energy

• Effect on reaction rate is exponential

Page 7: Energetic barriers of Ecological Systems Ken Locey

Activation Energy, EA

• In MTE, EA is: – activation energy of metabolism• Energy required to undergo cellular respiration, to drive

the tricarboxylic acid cycle, reduce S,N, CH3, etc.

– Suggested to be constant and narrowly constrained ( 0.6 to 0.8, Brown et al. 2004) • Considerable variation

– (0.2-1.2 eV, Munch and Salinas 2009)

Page 8: Energetic barriers of Ecological Systems Ken Locey

Clarke, Functional Ecology, 2006 Wang et al (2009) PNAs

Page 9: Energetic barriers of Ecological Systems Ken Locey

McCain and Sanders (2010) Ecology Algar et al. (2007) Global Ecol. Biogeogr.

Page 10: Energetic barriers of Ecological Systems Ken Locey

Activation Energy

• Determines the rate of biochemical processes

Page 11: Energetic barriers of Ecological Systems Ken Locey

Activation Energy

• Determines the rate of biochemical processes• Biological systems have evolved to decrease EA

– General evolution of enzymes– Evolution of enzymes specific to cold climates

Page 12: Energetic barriers of Ecological Systems Ken Locey

Question

• Do changes in activation energy at the biochemical level resemble changes at the ecological level?

Page 13: Energetic barriers of Ecological Systems Ken Locey

Prediction

• Higher activation energies (larger barriers) occur at lower rates

Zang et al (2005) J Biol Chem

Page 14: Energetic barriers of Ecological Systems Ken Locey

Carbon Monoxide from Composting due to Thermal Oxidation of Biomass

Hellebrand and Schade (2006) J Env. Qual.

Page 15: Energetic barriers of Ecological Systems Ken Locey

Estivation in the land snail Otala lacteaRamnanan and Storey (2006) J Exp. Biol.

Page 16: Energetic barriers of Ecological Systems Ken Locey

Knorr et al (2005) Nature

Soil Organic Carbon (SOC) Turnover

A strong trend for the more slowly cycling pools to have a higher activation energy

Page 17: Energetic barriers of Ecological Systems Ken Locey

• Prediction appears to have some support among studies where phenomena are the direct product of metabolism

Page 18: Energetic barriers of Ecological Systems Ken Locey

Question

• Do the dynamics of activation energy explain the variation in species diversity that appears to contradict MTE?

Page 19: Energetic barriers of Ecological Systems Ken Locey

Prediction

• Lower richness accompanies higher activation energy (larger barrier)

Zang et al (2005) J Biol Chem

Page 20: Energetic barriers of Ecological Systems Ken Locey

Allen et al. (2007) Scaling Biodiversity

Page 21: Energetic barriers of Ecological Systems Ken Locey

Allen et al. (2007) Scaling Biodiversity

Page 22: Energetic barriers of Ecological Systems Ken Locey

Algar et al. (2007) Global Ecol. Biogeogr.

Page 23: Energetic barriers of Ecological Systems Ken Locey

Want et al. (2009) PNAS

Page 24: Energetic barriers of Ecological Systems Ken Locey

McCain and Sanders (2010) Ecology

Page 25: Energetic barriers of Ecological Systems Ken Locey

Boltzmann factor Arrhenius equation f = e-E/kT k = Aoe-E/RT

Gibbs free energy of activation, ∆G‡ k = kBT/h*e-∆G‡/RT

∆G‡ = ∆H‡ - T∆S‡

Page 26: Energetic barriers of Ecological Systems Ken Locey
Page 27: Energetic barriers of Ecological Systems Ken Locey

Mikan et al (2002) Soil Biology and Biochemistry

Page 28: Energetic barriers of Ecological Systems Ken Locey

Mikan et al (2002) Soil Biology and Biochemistry

Page 29: Energetic barriers of Ecological Systems Ken Locey

Algar et al. (2007) Global Ecol. Biogeogr.

Page 30: Energetic barriers of Ecological Systems Ken Locey

• Prediction is supported among studies where the phenomenon under study is the direct product of metabolism

• Prediction appears to be supported when the phenomenon is fundamentally influenced by metabolic rate.

Page 31: Energetic barriers of Ecological Systems Ken Locey

Activation energy as an energetic barrier to ecological change

1/kT

ln (R

ate)

EAEA

Page 32: Energetic barriers of Ecological Systems Ken Locey

EA

EA

Pote

ntial

Ene

rgy COLD

HOT

EA EA

ATP Synthesis ATP Synthesis

Thermal Adaptation

Page 33: Energetic barriers of Ecological Systems Ken Locey

EA

EA

Pote

ntial

Ene

rgy

EA’

EA’

COLD

HOT

Thermal Adaptation

Page 34: Energetic barriers of Ecological Systems Ken Locey

Activation energy of metabolism as a structuring force of diversity

1/kT

ln (R

ichn

ess)

EAEA

Page 35: Energetic barriers of Ecological Systems Ken Locey

Irlich et al (2009) Am Nat.

Page 36: Energetic barriers of Ecological Systems Ken Locey

Activation energy of metabolism as a structuring force of diversity

1/kT

ln (R

ichn

ess)

EAEA

Page 37: Energetic barriers of Ecological Systems Ken Locey

Activation energy of metabolism as a structuring force of diversity

1/kT

ln (R

ichn

ess)

Page 38: Energetic barriers of Ecological Systems Ken Locey