Mechanisms of Evolution (Siva-Jothy) Flashcards

1
Q

Evolution

A

Any change in gene frequency

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2
Q

Gene Frequency

A

Proportional representation of a gene in the population

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3
Q

Pure breeding

A

Breeding back to the same genotype as the parents

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4
Q

Important points on Mendelian Inheritance

A

Heredity is not blending
-Particulates (discrete) cannot blend together, e.g. not half smooth, half wrinkly - only one or the other.

Acquired characteristics are not inherited
-Changed characteristics are not passed on

It does not produce a directional change in gene frequencies
-It does not produce evolutionary change, there is no change in gene frequency, only genotype and phenotype.

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5
Q

Conditions for Hardy-Weinberg

A
  • Infinite population size (so no genetic drift)
  • No mutation
  • Mendelian Inheritance
  • No selection
  • Random mating

As these are requirements of the H-W equilibrium, where evolution is not occurring, they could be some of the mechanisms of evolution

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6
Q

Genetic Drift

A

(Only in small populations)
GD is more likely to happen in small populations
-If population <100, drift is very important
-If population >100,000, drift is negligible

E.g. Human blood groups in Italy
-Blood group frequencies vary a lot between villages
-Blood group frequencies are similar between cities
Villages have smaller populations, so genetic drift is much more likely

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7
Q

Mutation

A

Mutation: A heritable change in genetic material
Mutation might involve;
-Change in chromosome
-Change in gene

Mutation occurs at a very low rate (10-9-10-4), so is relatively unimportant as a mechanism of evolution.

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8
Q

Non-Mendelian Inheritance

A
  • Meiotic Drive
  • Molecular Drive
  • Inheritance of acquired characteristics
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9
Q

Meiotic Drive

A

Meiotic drive genes distort gene segregation so that gametes that don’t carry the meiotic drive genes die.

Meiotic driveis a type ofintragenomic conflict, whereby one or morelociwithin agenomewill affect a manipulation of themeioticprocess in such a way as to favor the transmission of one or moreallelesover another, regardless of its phenotypic expression.
E.g. segregation distorter in Drosophila
-Meiotic drive is rare.

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10
Q

Molecular Drive

A

Molecular drive genes are able to convert slightly different genes into identical copies of themselves.
Molecular drive is rare.

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11
Q

Inheritance of acquired characteristics

A

The main problem with this theory:

  • No proposed mechanism
  • No detrimental characteristics passed on

Inheritance of acquired characteristics doesn’t occur.

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12
Q

Selection

A

YES
Selection occurs when genotypes differ in their ability to pass genes on to the next generation
-If a genotype is successful, its genes will increase frequency
-If a genotype is unsuccessful, its genes will decrease frequency.

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13
Q

Types of Selection

A

Artificial selection: Humans deciding characteristics that are beneficial to keep in the gene pool.

Natural selection: Traits that enhance survival are selected for.

  • Avoiding of predators/pathogens
  • Feeding and parental care (higher chance of survival).

Sexual selection: Drives non-random mating
-Sexually selected traits
-Birds courting displays and behaviours, e.g. large colourful feathers
Fighting to “guard” females, selecting for weapons.

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14
Q

Random Mating

A

This does not occur due to sexual selection

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15
Q

Summary

A

Mechanisms of Evolution:

  • Genetic Drift YES
  • Mutation NO
  • Non-Mendelian Inheritance NO?
  • Selection YES
  • Random Mating NO
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