Lecture 24 Flashcards

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1
Q

Pests and evolution problem

A
  • We use chemicals to combat pests and pathogens
    • Weeds, insects, bacteria, tumors
    • We create strong selective pressure for resistance
    • Fitness advantage to resistant genotypes arising from mutation and gene flow
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2
Q

Weeds and Agriculture

A
  • Weeds cause approx. 34% loss of crop yields annually
    • Weeds compete with crops for light, nutrients, space
    • 26 bill in loses
    • Spray with herbicides
    • BUT HUGE RESISTANCE TO HERBICIDES BUILDING
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2
Q

Where does resistance come from

A

1) Pre existing genetic variation in population
2) Gene flow
- Epidemic spread of resistance from one region to the next
3) New mutations
- In very large populations new, simple mutations may be introduced at a high rate
Wises management depends on how resistance tends to evolve
Out crossing weeds have more pre-existing resistance variation than selfing weeds

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3
Q

Can Herbicide Resistance be stopped

A

1) Multi-herbicide treatment makes new adaptation less likely, requires more complex adaptation
2) Rotation of different kinds of herbicides, weeds regularly hit by selective pressures
BUT = could select for generalized resistance

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4
Q

Malaria and Mosquitoes

A

major prevention strategy is insecticide, strong selective pressure on mosquitoes has led to rapid evolution of resistance
- Tailor insecticide’s application to knowledge of mosquito generation times and spatial distributions
- Minimize selection for mosquitoes resistance while reducing malaria transmission
- Less aggressive drug treatment of malarias in mice resulted in less evolution of resistance, reduced infectiousness and similar health outcomes

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5
Q

Multi drug cocktails slow evolution of HIV resistance

A
  • Different mechanisms of action
    • Low viral loads make multiple mutations less likely
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6
Q

CANCER

A
  • Chemotherapy may not be best, selects for resistance
    Drug cocktail may be better option
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7
Q

CLIMATE CHANGE

A
  • Will species adapt?
    Genetic issues
    Loss of genetic diversity
    Loss of heterozygosity
    Inbreeding depression
    Fixation of deleterious alleles
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8
Q

EVOLUTIONARY RESCUE DEPENDS

A

POPULATION SIZE BENEFICAL MUTATION RATE HOW MUCH FITNESS WAS REDUCES

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