population genetics and evolution. can individuals evolve? can an organism respond to natural...

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POPULATION GENETICS AND EVOLUTION

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Page 1: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

POPULATION GENETICS AND EVOLUTION

Page 2: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

• Can individuals evolve?

• Can an organism respond to natural selection by acquiring or losing characteristics?

Page 3: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

•POPULATIONS, NOT INDIVIDUALS, EVOLVE!!!!!

Page 4: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

How does Natural Selection work?

• Natural selection acts on the phenotypes of a population

• Evolution occurs as population’s genes and frequencies change over time

Page 5: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

How can a populations genes change over time?

• Gene pool: *the combined genetic information of all the members of a particular population

*contains two or more alleles

• Allelic Frequency:*percentage of any specific allele in the gene pool

• Genetic equilibrium:

*a population in which the frequency of alleles remains the same over generations → population not evolving

Page 6: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

5 conditions required to maintain genetic equilibrium

1. Random mating

2. Very large population

3. No immigration or emigration

4. No mutations

5. No natural selection

Page 7: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

What causes changes in genetic equilibrium?

1. Mutations

2. Gene Drift

Page 8: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Mutations

• Any change in a sequence of DNA

• Can occur due to mistakes in the replication of DNA or due to environmental factors.

• Occasionally mutations can lead to useful variations that can be added to the populations gene pool.

Page 9: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Genetic Drift

• A change in the allelic frequencies in a population that is due to chance

• In smaller populations, the effects of genetic drift become more pronounced, and the chance of losing an allele becomes greater.

• Genetic drift may take place when a small group of individuals colonizes a new habitat.

Page 10: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

• The genes of the next generation will be the genes of the “lucky” individuals, not necessarily the healthier or “better” individuals.

Genetic Drift Video

Genetic Drift Video 2

Page 11: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Bottleneck and Founder Effects

-Genetic drift can cause big losses of genetic variation for small populations.-Population bottlenecks occur when a population’s size is reduced for at least one generation.-A founder effect occurs when a new colony is started by a few members of the original population.

Page 12: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

• a population declines to a very low number and then rebounds

Page 13: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

D. Natural selection explains how evolutionworks.

A. They mean the same thing.

B. Evolution works against natural

selection.

What is the relationship between the terms natural selection and evolution?

C. Evolution explains how natural selectionworks.

Knowledge Check

Page 14: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Speciation-A species is often defined as a group of individuals that actually or potentially interbreed in nature. -A species is the biggest gene pool possible under natural conditions.-Speciation is an event so dramatic that it produces two or more separate species.

Page 15: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Rate of Speciation• Evolution proceeds in small, gradual steps according to a

theory called gradualism.

• Punctuated equilibrium explains rapid spurts of genetic change causing species to diverge quickly.

Page 16: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?
Page 17: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?
Page 18: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Causes of Speciation1. Isolation

2. Reduction of Gene Flow

Page 19: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Types of Isolation

• Behavioral Isolation

• Geographic Isolation

• Temporal isolation

Page 20: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Behavioral Isolation• A form of reproductive isolation in which two populations

have differences in courtship rituals or other types of behavior that prevent them from interbreeding

Page 21: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Geographic Isolation• Organisms of the same species are separated (due to a

river, canyon, mountain, etc) and slowly evolve along separate lines.

• Gene pools begin to show major differences, so reproduction with an organism on the other side of the physical barrier is no long possible

Page 22: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?
Page 23: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Temporal isolation• Two or more species reproduce at different times.

• They cannot reproduce with each other

Example: Orchids

Page 24: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Kinds of Speciation

Allopatric speciation is just a fancy

name for speciation by geographic

isolation

Sympatric speciation refers to the formation of two or more descendant species from a single ancestral species all occupying the same geographic location.

Page 25: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

Adaptive Radiation

• Can occur in a relatively short time when one species gives rise to many different species in response to the creation of new habitat or some other ecological opportunity

Page 27: POPULATION GENETICS AND EVOLUTION. Can individuals evolve? Can an organism respond to natural selection by acquiring or losing characteristics?

A. gradual

B. elevated

C. sequential

D. punctuated

What tempo of evolution does this model represent?

Knowledge Check