Linked from
The 147 pages that link to Island biogeography, each with the reason it gives.
Invasive speciesRelated: Island communities often face heightened risks from introduced predators and competitors.
Habitat fragmentationRelated: Its island-area and isolation principles have been applied to habitat patches.
Seed dispersalRelated: Seed arrival is a key route by which isolated habitats gain plant species.
BiodiversityRelated: It explains why habitat size and isolation produce distinct patterns of species diversity.
Ecological nicheRelated: Island communities reveal how colonization and competition shape available ecological roles.
Adaptive radiationRelated: Isolation and limited colonization influence the opportunities and constraints on island radiations.
Gene flowRelated: Dispersal between islands links populations and influences colonization and genetic exchange.
EndemismRelated: Its framework connects isolation and colonization to the formation and persistence of island endemics.
Biological invasionRelated: Islands can be especially vulnerable when introduced predators or competitors encounter isolated communities.
Forest fragmentationRelated: Its area-and-isolation framework is often applied to forest patches, though the analogy has limits.
Lapita cultureRelated: Island environments shaped which plants and animals settlers could use or transport.
SquamataRelated: Island squamates provide examples of colonization, endemism, and evolutionary change.
Volcanic islandRelated: Volcanic islands offer natural records of colonization, isolation, and ecological change.
Founder effectRelated: Island colonization often begins with few founders, making founder effects especially relevant.
Pleistocene megafaunaRelated: Island populations reveal how isolation and human arrival shaped vulnerable megafauna.
Great American Biotic InterchangeRelated: South America's long isolation offers a continental-scale comparison for colonization theory.
Alfred Russel WallaceRelated: Wallace’s island comparisons showed how barriers and dispersal produce distinct faunas.
Extinction debtRelated: Its framework helps explain delayed losses in isolated habitat patches that function like islands.
ArecaceaeRelated: Island palm endemism makes isolation central to understanding extinction risk.
MetapopulationRelated: Its ideas about isolation and colonization also inform habitat-patch networks.
HawaiʻiRelated: It helps explain Hawaiʻi’s high endemism and vulnerability to introduced species.
DispersalRelated: Immigration by dispersers is a central process in island species turnover.
Landscape ecologyRelated: Its ideas about area and isolation informed thinking about habitat patches in landscapes.
Coral TriangleRelated: The region’s many islands create varied patterns of isolation and species exchange.
Arctic foxRelated: Isolated Arctic islands reveal how dispersal across sea ice shapes fox populations.
Komodo dragonRelated: Isolation among Indonesian islands helps explain the dragon’s restricted native range.
Endemic speciesRelated: Islands often isolate populations and contain unusually high proportions of endemic species.
Evolution of birdsRelated: Island isolation has repeatedly produced distinctive bird radiations and endemic species.
DefaunationRelated: Island faunas are especially vulnerable to introduced predators and other human pressures.
Fossil calibrationRelated: Island emergence can offer an independent time constraint for some divergences.
Landscape connectivityRelated: Its account of isolation provides a comparison for habitat patches embedded in landscapes.
Oceanic islandRelated: Oceanic islands provide clear cases for testing how isolation shapes biodiversity.
FlightlessnessRelated: Island isolation and predator communities often alter the costs and benefits of flight.
ParrotRelated: Island parrots, including New Zealand endemics, illustrate evolutionary effects of isolation.
New World monkeyRelated: South America's long geographic isolation helped shape the distinctive platyrrhine radiation.
PhylogeographyRelated: Island lineages provide clear cases for testing colonization routes and isolation histories.
RatiteRelated: Several ratite lineages evolved on isolated landmasses, where distinctive forms could persist.
Wildlife habitatRelated: Its principles illuminate how patch size and isolation influence habitat communities.
American minkRelated: Island wildlife can be especially vulnerable when mink are introduced as new predators.
Mesopredator releaseRelated: Islands and isolated habitats can be especially vulnerable when introduced mesopredators multiply.
Prince Edward IslandsRelated: The archipelago’s remoteness helps explain its distinctive, limited terrestrial communities.
AmborellaRelated: Amborella’s restricted range raises questions about persistence and dispersal on islands.
Cave BiologyRelated: Isolated cave systems invite tests of how habitat area and separation affect species diversity.
PsittaciformesRelated: Island endemism has produced distinctive parrot lineages, many especially vulnerable to extinction.
SurtseyRelated: Surtsey’s isolation and small size help illuminate how organisms reach oceanic islands.
The Lost WorldRelated: The plateau functions like an ecological island cut off from surrounding environments.
Amami IslandsRelated: Isolation and varied island sizes help explain Amami’s endemic wildlife.
AnnobónRelated: Annobón’s isolation influences which species reach and persist on the island.
Coral islandRelated: Small, isolated coral islands support distinctive patterns of species arrival and loss.
Hawaiian honeycreeperRelated: Isolation among Hawaiian islands influenced honeycreeper dispersal and speciation.