Linked from
The 91 pages that link to Selective breeding, each with the reason it gives.
Charles DarwinRelated: Darwin used breeding examples to show how selection can alter populations.
Coral bleachingRelated: Coral breeding programs investigate whether heat tolerance can be strengthened across generations.
Plant breedingRelated: Choosing which plants reproduce is the central route by which breeders shift trait frequencies.
DomesticationRelated: People favor traits that make organisms more useful, manageable, or productive.
EvolutionRelated: It demonstrates how differential reproduction can rapidly alter populations.
Evolutionary biologyRelated: Domestication demonstrates how selection can reshape populations across generations.
Plant domesticationRelated: Repeatedly saving seeds from preferred plants shifts populations toward human-valued traits.
CultivarRelated: Repeated selection can establish a stable, recognizable cultivated plant grouping.
Inbreeding depressionRelated: Breeders balance selection for desired traits against the costs of close-relative mating.
Sexual reproductionRelated: It uses sexual reproduction to shape trait combinations across generations.
Animal domesticationRelated: Repeated breeding for useful traits is one route by which domesticated populations change.
AnthocyaninRelated: Breeders select anthocyanin-related traits to produce distinctive flower, fruit, and foliage colors.
Animal husbandryRelated: Breeders choose parents to strengthen useful traits across generations.
Domestication of the horseRelated: Human selection altered horse populations over generations.
CattleRelated: It has produced cattle suited to dairy, beef, and local conditions.
On the Origin of SpeciesRelated: Darwin used domesticated breeds to show how selection can transform populations.
Aquarium fishRelated: Breeders develop aquarium varieties with preferred colors, shapes, and fin forms.
Domestic chickenRelated: Breeders have changed chicken growth, egg production, appearance, and behavior through selection.
InbreedingRelated: Breeders sometimes use inbreeding to fix traits, while managing associated fitness costs.
AvicultureRelated: Aviculturists use it to develop varieties and influence captive populations.
Brassica oleraceaRelated: Repeatedly choosing plants with desired traits produced the species' distinct crop forms.
LivestockRelated: Breeders change livestock populations for traits such as growth, fertility, and disease resistance.
Cat breedRelated: Breeders shape distinctive traits by choosing which cats reproduce.
Cattle breedRelated: Repeated selection shifts inherited traits toward a breed’s stated standard.
Domestication of cattleRelated: Human preferences shaped cattle populations across generations.
Homing pigeonRelated: Breeders have selected pigeons for speed, endurance, and dependable return.
Cat breed standardRelated: Breeders use standards to guide selection toward specified appearances.
Feed conversion ratioRelated: Breeding programs can select animals that produce more output from the same feed.
Fur farmingRelated: Fur farms select breeding animals for coat color, pelt quality, health, and reproductive performance.
Herding dogRelated: Breeders selected dogs for herding behavior, stamina, and responsiveness.
Beef productionRelated: Breeders select cattle for traits such as growth, fertility, and carcass quality.
Bos taurusRelated: It produced the specialized body forms and production traits of cattle breeds.
Intensive animal farmingRelated: Breeding for growth and yield changes animal bodies and production timelines.
PigeonRelated: Human selection created the striking range of pigeon breeds.
BroilerRelated: Decades of selection produced broilers with rapid growth and high meat yield.
Chicken breedsRelated: Repeated selection across generations produces breed characteristics.
Livestock farmingRelated: Breeding decisions shape animals’ productivity, health, and suitability for particular systems.
HybridRelated: Hybridization is one way breeders combine selected traits from distinct lines.
Kennel ClubRelated: Breed standards can guide breeders toward particular physical and behavioral traits.
Whiteleg shrimpRelated: Breeding programs have improved growth and production traits in farmed stocks.
BudgerigarRelated: Breeders have produced budgerigar color and pattern varieties beyond the wild type.
DogRelated: Human selection produced the wide range of dog sizes, shapes, and working abilities.
Domestic pigeonRelated: Breeders used selective reproduction to create distinct pigeon forms.
Domestic rabbitRelated: Repeated selection produced the domestic rabbit’s range of sizes, coats, and forms.
CauliflowerRelated: Breeders selected compact, pale flower heads and other useful traits.
Red junglefowlRelated: Human selection transformed junglefowl traits into the diversity of domestic chicken breeds.
Shellfish aquacultureRelated: Breeding programs seek shellfish lines with better growth, disease resistance, or environmental tolerance.
GuppyRelated: Aquarists have bred guppies for diverse colors, fin shapes, and patterns.
Laboratory mouseRelated: It established many research strains with predictable characteristics.
Reproduction (biology)Related: It uses reproduction to alter traits across generations.