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Population Growth and Carrying Capacity

Explore the concepts of population growth, biotic potential, and carrying capacity. Learn about the factors that affect population growth and the consequences of exceeding carrying capacity. Understand the dynamics of predator-prey relationships and their impact on population sizes. Discover how human population growth is influenced by advancements and its potential implications.

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Population Growth and Carrying Capacity

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  1. Population Growth Population = all members of same species (interbreeding organisms) within an ecosystem.

  2. Populations can grow exponentially... ...If each organism has multiple offspring. For Example • 1 fly lays about 120 eggs • In one year, that one fly has about 5 x 1012 great, great, great, great grandchildren. • This fly population is meeting its Biotic Potential because it is increasing at the maximum rate possible.

  3. BioticPotential • Maximum rate at which a population can increase in ideal conditions. Biotic Potential is affected by the organism’s • Lifespan • Age at first reproduction • Frequency of reproduction • Clutch size (how many offspring produced) • Length of reproductive capability

  4. Exponential growth of 2 organisms with different biotic potentials • Bacteria divide every 20 minutes; it takes 220 minutes to reach a population of about 2000. • Eagles reproduce once a year starting at age 4 (red) or age 6 (green). It takes about 23 years (red) or 32 years (green) to reach 2000 individuals.

  5. Reality Check: There are limits to exponential growth ! Population growth is limited by“environmental resistance” Density - Dependent Factors (tend to be biotic) • Limited resources (food, space, light for photosynthesizers) • Competition • Predation - increased prey means increased predation • Parasitism - spread more easily in high density pops Density- Independent Factors (tend to be abiotic) • Weather (e.g. plants, insects sensitive to extreme hot, cold) • Natural disasters - fire, hurricanes, earthquake, volcanos

  6. Some populations expand until they reach equilibrium at their limit • Exponential growth under favorable conditions: food, space available, little to no predation, parasitism or competition. • Once the population size matches the carrying capacity of the ecosystem, its growth slows and reaches equilibrium.

  7. Carrying Capacity • Is the maximum population size that can be supported by an • ecosystem over the long term • Is typically limited by the resources available in that ecosystem

  8. What happens if a population exceeds carrying capacity? • Some populations grow too fast… • Population overshoots resources… • Population crashes • E.g. Gypsy Moth caterpillars can defoliate the trees they live on so quickly thattheir larvae have nothing to feed on!

  9. Sometimes they overshoot but are able to stabilize

  10. Predator - Prey relationships can cause cyclical population curves • When prey populations increase, more predation occurs because- (1) predators encounter prey more often and (2) more prey support a bigger predator population. • When predators get too numerous, they reduce the prey population, thus depleting their food supply. • A change in the prey population illicits change in the predator population and vice versa.

  11. Predator-Prey population trends Hare and Lynx Weavil and Wasp

  12. Human Population Growth:When will we hit carrying capacity? Advances have increased the earth’s carrying capacity and pop size

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