Linked from
The 120 pages that link to Ecological restoration, each with the reason it gives.
GlomeromycotaRelated: Introducing suitable mycorrhizal fungi can help restore plant–soil interactions at some sites.
Insect conservationRelated: Restoring degraded sites can rebuild the resources insect populations need.
Native speciesRelated: Restoration projects often use native species to recover regional ecological functions.
Soil ecologyRelated: Restoration often depends on rebuilding soil communities and their interactions.
Soil ecosystemRelated: Restoring soil conditions and biological communities can help reestablish ecosystem function.
TranslocationRelated: Moving organisms can restore missing species and ecological interactions.
VegetationRelated: Restoration often aims to re-establish characteristic native vegetation.
NumbatRelated: Restoring woodland and ground cover improves conditions for numbat populations and their prey.
PhytogeographyRelated: Historical plant distributions can inform choices about restoration targets and species.
OtterRelated: Otter reintroductions have been used to restore predator-driven ecological processes.
CarexRelated: Native Carex species are planted to rebuild wetland and shoreline communities.
Environmental protectionRelated: Restoration repairs ecological damage that prevention alone cannot avoid.
ProteaceaeRelated: Native Proteaceae species are used to re-establish vegetation in some Southern Hemisphere habitats.
Aldabra giant tortoiseRelated: Tortoises have been introduced to islands to restore lost grazing and seed-dispersal functions.
Chinese alligatorRelated: Restoring wetlands can improve the limited habitat available for wild alligators.
Long Island SoundRelated: Restoration projects target wetlands, eelgrass, and other habitats around the Sound.
Mascarene IslandsRelated: Restoration is central to rebuilding the islands’ fragmented native forests.
Ulmus pumilaRelated: Removing established Siberian elm can be part of restoring invaded grasslands.
Environmental philosophyRelated: Restoration forces decisions about historical baselines, human intervention, and what counts as ecological repair.
Galápagos tortoiseRelated: Restoring island habitats supports tortoise populations alongside direct breeding and release programs.
Landscape designRelated: Restoration projects use spatial design to support ecological recovery and public use.
Acacia melanoxylonRelated: Planting blackwood can contribute to revegetation, though its suitability depends on local ecology.
Acadia National ParkRelated: Restoration helps address habitat disruption and ecological change within the park.
Amsterdam IslandRelated: Eradicating introduced animals has enabled native vegetation to recover.
Controlled burnRelated: Fire can restore ecological processes disrupted by suppression or land-use change.
Lar gibbonRelated: Restoring connected forest can improve habitat available to isolated lar gibbon groups.
Alnus glutinosaRelated: Its rapid establishment and nitrogen enrichment make it useful in wetland restoration.
Amazon parrotRelated: Restoring forest habitat supports wild populations beyond captive breeding efforts.
BrackenRelated: Restoration projects may need to manage bracken before other vegetation can recover.
BulbulRelated: Bulbul seed dispersal can support the return of native plants in recovering habitats.
Coastal fishRelated: Restoring reefs, wetlands, or seagrass can recover fish habitat.
Flora of Central EuropeRelated: Restoration raises practical questions about native species, reference conditions, and future climates.
History of ecologyRelated: Restoration turns ecological knowledge into deliberate intervention in altered landscapes.
Juniperus californicaRelated: Planting locally appropriate junipers can help restore native shrubland and woodland structure.
Juniperus phoeniceaRelated: Its drought tolerance and coastal occurrence can make it relevant to restoring Mediterranean habitats.
Multi-organism systemsRelated: Restoration often succeeds by reestablishing interactions, not merely adding individual species.
PolylepisRelated: Restoration projects use native Polylepis to rebuild depleted high-Andean woodlands.
Shelford's law of toleranceRelated: Restoration succeeds only when environmental conditions fall within the tolerances of target species.
SolidagoRelated: Native goldenrods can establish in restoration sites and support local food webs.
XanthorrhoeaRelated: Grass trees can be incorporated into restoration of suitable Australian heathland and woodland habitats.