• Natural selection is the mechanism driving evolutionary change
• It acts on heritable variation and can produce adaptation, speciation, and biodiversity
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2
Learning objective
D4.1.2—Roles of mutation and sexual reproduction
New
• Mutation creates new alleles, especially when germ-line mutations are inherited
• Meiosis and random fertilization create new combinations of existing alleles
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3
Learning objective
D4.1.3—Overproduction and competition
New
• Overproduction of offspring leads to high mortality in limited environments
• Competition for food, space, mates, and other resources promotes selection
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4
Learning objective
D4.1.4—Abiotic factors as selection pressures
New
• Abiotic factors can act as density-independent selection pressures
• Temperature, drought, light, salinity, and pH can favour different variants
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5
Learning objective
D4.1.5—Differences in adaptation, survival, reproduction
New
• Individuals vary in adaptation, survival, and reproductive success
• Fitness means passing alleles to offspring in a particular environment
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6
Learning objective
D4.1.6—Traits must be heritable
New
• Natural selection causes evolution only if traits are heritable
• Acquired characteristics are not inherited through DNA base sequences
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7
Learning objective
D4.1.7—Sexual selection
New
• Sexual selection favours traits that increase mate choice or mating competition success
• Displays, ornaments, and behaviours such as birds-of-paradise plumage can be selected
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8
Learning objective
D4.1.8—Modelling selection
New
• Selection can be modelled by experimentally controlling selection pressures
• Endler's guppy experiments test predation pressure, colour pattern, and mating success
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