Linked from
The 50 pages that link to Fire ecology, each with the reason it gives.
WildfireNarrower topic: Wildfire can renew some habitats while damaging others, depending on ecological context.
GrasslandRelated: Recurring fires suppress woody plants and can sustain grass-dominated landscapes.
SavannaRelated: Recurring fires suppress woody growth and favor many savanna grasses.
PoaceaeRelated: Grass fuels can sustain frequent fires that favor grasses over many woody plants.
SerotinyRelated: In fire-prone habitats, heat can open retained cones after a burn.
CerradoRelated: Many Cerrado plants and communities are adapted to recurring fires.
SteppeRelated: Fires can suppress woody encroachment and renew steppe grasses.
Tropical dry forestRelated: Seasonally dry vegetation and accumulated litter can make fire a powerful ecological force.
PampasRelated: Fire has historically helped maintain open vegetation in parts of the Pampas.
Pine coneRelated: Fire can open serotinous cones and shape pine regeneration.
Plant successionRelated: Fire can reset vegetation while leaving seeds, roots, or soils that steer succession.
Aerial firefightingRelated: Rapid suppression can alter the natural role of fire in ecosystems.
Cape Floristic RegionRelated: Many fynbos plants depend on recurring fires for regeneration or seed release.
Forest fireNarrower topic: It explains how fire can damage forests while also sustaining some ecosystems.
SerengetiRelated: Grassland fires help shape vegetation and habitat across parts of the Serengeti.
Madagascar dry deciduous forestsRelated: Fire affects forest edges and recovery, although its frequency and impacts vary across the region.
Fire regimeNarrower topic: It explains how recurring fire patterns affect ecological processes.
FynbosNarrower topic: Fynbos is shaped by recurring fires that influence its species composition and life cycles.
HeathlandRelated: Periodic fires can prevent trees from closing the heathland canopy and stimulate shrub regeneration.
Miombo woodlandRelated: Frequent fires influence tree recruitment, grass cover, and woodland structure.
Oak–hickory forestRelated: Recurring fire can favor fire-tolerant oaks over less tolerant competitors.
Eastern deciduous forestsRelated: Fire frequency helps distinguish oak-dominated stands from less fire-tolerant communities.
VegetationBroader topic: Fire frequency and intensity help determine vegetation patterns in fire-prone regions.
Eastern North American forestRelated: Fire shapes some eastern habitats, especially pine forests and oak woodlands.
Grazing ecologyCompared with: Fire and grazing can produce similar vegetation changes while interacting to amplify or counteract one another.
Mediterranean forests, woodlands, and scrubNarrower topic: It explains why fire can renew some plant communities while degrading others.
Oak savannaNarrower topic: It explains how recurring fires influence oak regeneration, grasses, and habitat structure.
Great Smoky Mountains National ParkRelated: Fire management affects forest succession and habitat in parts of the park.
Sequoia National ParkNarrower topic: Periodic fire helps giant sequoias reproduce and maintains their habitat.
Longleaf pineRelated: Frequent low-intensity fires suppress competitors while established longleaf pines survive.
Mediterranean forestsRelated: Fire regimes help determine whether Mediterranean landscapes remain woodland, scrub, or open habitat.
Phragmites australisRelated: Dry common reed stems can carry fire, and burning can alter stand structure and wetland management.
Pinus halepensisNarrower topic: Fire shapes Aleppo pine regeneration and the structure of its woodlands.
ShrublandRelated: Fire can suppress tree establishment, trigger shrub regeneration, and shape shrubland structure.
Flooded grasslands and savannasRelated: Fires during dry phases interact with flooding to shape grass and tree cover.
Pinus ponderosaRelated: Frequent low-intensity fires historically shaped many ponderosa pine forests.
Quercus macrocarpaRelated: Repeated low-intensity fires helped maintain habitats where bur oak thrives.
Quercus velutinaRelated: Black oak’s persistence in some open forests is linked to fire history and disturbance.
Sequoiadendron giganteumRelated: Periodic fire helps create conditions for giant sequoia regeneration.
Tropical and subtropical coniferous forestsRelated: Fire frequency and intensity influence forest structure and conifer regeneration.
Boreal forest of CanadaNarrower topic: It explains how boreal species and landscapes respond to repeated burning.
Flora of the MediterraneanRelated: Recurring fires select for plants that resprout or germinate after burning.
Juniperus californicaRelated: Fire regimes influence the shrublands and woodlands where the species occurs.
MeadowRelated: Periodic fire can limit woody plants and renew vegetation in some meadow landscapes.
Montane grasslands and shrublandsRelated: Fire can maintain open vegetation and reshape forest–grassland boundaries.
Pinus pinasterRelated: Fire can open retained cones and create conditions for maritime pine seedlings.
Pinus taedaRelated: Fire regimes influence the composition and regeneration of southeastern pine forests.
Seasonal tropical forestRelated: Dry-season fuels can make fire a powerful force in seasonal forests.
Tropical and subtropical grasslandsRelated: Recurring fires suppress many woody plants and favor fire-adapted grasses.
XanthorrhoeaRelated: Many Xanthorrhoea species inhabit landscapes where recurring fires shape survival and reproduction.