Linked from
The 66 pages that link to Ecological succession, each with the reason it gives.
BiodiversityRelated: Succession changes which species occur in a place and how communities develop.
HerbivoryRelated: Selective feeding can alter which plants establish and dominate after disturbance.
BioindicatorRelated: Natural succession can alter indicator communities independently of pollution.
Ecological restorationRelated: Recovery may follow succession, which restoration can initiate, guide, or accelerate.
Urban ecologyRelated: Vacant lots and abandoned infrastructure can pass through recognizable stages of ecological change.
Amazon rainforestRelated: It explains how forest patches recover after tree falls, fires, or clearing.
Intertidal zoneRelated: Colonization and disturbance can drive succession on newly exposed or altered shore surfaces.
Forest restorationRelated: Forest recovery often proceeds through successive communities as vegetation, soils, and habitat develop.
RewildingRelated: Once pressures ease, succession helps restored habitats develop through changing communities.
Cultural landscapeRelated: Natural succession can alter landscapes after human use changes or stops.
Forest successionNarrower topic: Forest succession is the forest-specific form of this broader community process.
EcologyRelated: It describes how communities develop after disturbance or on newly available habitat.
EcosystemRelated: Succession describes how ecosystem communities develop after disturbance or habitat creation.
Riparian zoneRelated: Floods, erosion, and sediment deposition repeatedly create conditions for new vegetation to establish.
Ecosystem engineeringRelated: Physical modifications can redirect the sequence and pace of community change.
Wetland restorationRelated: Plant and animal communities shift as restored conditions develop.
Forest regenerationNarrower topic: Tree establishment is one stage in the broader rebuilding of forest communities.
AfforestationRelated: Succession describes how vegetation develops toward forest on suitable land.
Mount St. HelensRelated: Plants and animals recolonized the eruption zone through both gradual recovery and unexpected survival.
Deep-sea ecologyRelated: Succession at vents and whale falls raises questions about community assembly and duration.
HabitatRelated: Succession can transform the conditions and organisms found in a habitat.
PermacultureRelated: Permaculture designs planting sequences around the stages through which ecosystems develop.
Mine reclamationRelated: Reclaimed sites may develop ecosystems along trajectories that differ from reference habitats.
TaigaRelated: Succession explains how taiga vegetation develops after fire or other disturbance.
Tropical forestRelated: Succession explains how tropical forests recover and change after clearing or storms.
Altitudinal zonationCompared with: Succession is temporal change, unlike zonation's spatial pattern across elevation.
Restoration ecologyRelated: Succession describes how communities may develop after restoration removes barriers to natural recovery.
Island ecologyRelated: New volcanic or disturbed islands reveal succession as communities develop.
Human ecologyRelated: Urban ecologists adapted succession to describe shifts in land use and community composition.
DecomposerRelated: Decomposition of dead biomass supplies resources that influence community recovery.
Forest fireRelated: After a fire, recovery follows pathways shaped by surviving organisms and conditions.
BiofoulingRelated: Fouling communities change as early colonists alter surfaces for later arrivals.
SquirrelRelated: Seed burial by squirrels can influence which trees establish after disturbance.
Community (ecology)Related: Succession describes one way community composition shifts through time.
HeathlandRelated: Without repeated disturbance, many heathlands develop toward scrub or woodland.
Nature (natural world)Related: It traces how communities reorganize after disturbance or on newly exposed ground.
SurtseyNarrower topic: Surtsey documents succession on land whose starting conditions and age are unusually well known.
Cavity-nestingRelated: As trees age and decay, succession can increase the supply of nesting cavities.
Grassland restorationRelated: Restoration often guides succession toward a diverse, self-sustaining grassland.
HoldfastRelated: Holdfast attachment helps algae colonize surfaces and persist through community change.
Marine habitatRelated: After disturbance or new substrate formation, succession alters which species occupy a habitat.
RainforestRelated: It describes forest recovery after gaps, storms, fires, or clearing.
Shade toleranceRelated: As forests develop, increasing shade often favors tolerant species over light-demanding ones.
VegetationRelated: Succession describes how vegetation develops after colonization or disturbance.
FlevolandRelated: Newly drained land developed habitats that later shaped conservation choices in Flevoland.
Niche constructionCompared with: Succession can occur without organism-driven environmental modification altering selection on the modifiers.
Tide poolRelated: Disturbance can clear pool surfaces, after which organisms recolonize in changing sequences.
AridificationRelated: As conditions dry, plant and animal communities may shift toward drought-tolerant forms.
Tropical and subtropical moist broadleaf forestsRelated: Succession governs forest recovery after treefall, storms, and human disturbance.
LimpetRelated: By clearing algae from rock, grazing limpets can alter where young organisms settle.