Linked from
The 155 pages that link to Trophic cascade, each with the reason it gives.
PredationRelated: Predator-driven changes in prey can cascade to organisms prey do not consume.
HerbivoryRelated: Predators can alter vegetation indirectly by changing herbivore numbers or behavior.
OverfishingRelated: Removing abundant predators can reorganize entire marine communities.
Biological pest controlRelated: Adding or conserving natural enemies can indirectly change plant damage through food webs.
Food webRelated: A shift in one feeding link can alter several connected populations.
CarnivoraRelated: Large carnivorans can alter ecosystems by changing prey abundance and behavior.
Marine food webRelated: Predator changes can propagate through marine food webs to prey and producers.
Wildlife managementRelated: Changing predator or herbivore abundance can produce effects beyond the managed species.
Keystone speciesRelated: Predators can shape vegetation and prey communities through cascading effects.
OmnivoryRelated: Omnivores can alter cascades by feeding across more than one trophic level.
BioaccumulationNarrower topic: Contaminant effects on top predators can reshape food webs through cascading population changes.
Biological invasionRelated: An invader that alters predators or herbivores can trigger effects throughout a food web.
BushmeatRelated: Removing predators or large herbivores through hunting can reshape food webs.
HerbivoreRelated: Changes in herbivore abundance can alter plant communities and affect predators.
ScavengingRelated: Changes in scavenger abundance can reshape interactions among predators, prey, and decomposers.
GrazingRelated: Changes in grazing can alter plants and, in turn, other parts of food webs.
ZooplanktonRelated: Predators of zooplankton can indirectly change phytoplankton through this food-web pathway.
FisheriesRelated: Removing major fish predators can reorganize food webs through cascading effects.
Pleistocene megafaunaRelated: Removing large herbivores and predators could reorganize food webs.
Seagrass meadowRelated: Predators can indirectly protect meadows by suppressing grazers that overconsume seagrass.
AmphibianRelated: Amphibian losses can alter predator and prey populations in connected food webs.
Diel vertical migrationRelated: Migration changes when and where predators encounter prey, with effects across food webs.
InsectivoryRelated: Removing insectivorous predators can alter arthropod abundance and plant damage.
RewildingRelated: Restored predators can reshape prey behavior and vegetation through cascading effects.
Trophic levelRelated: A change in one level can reshape feeding relationships throughout the food web.
EcologyRelated: It shows how a change in one population can reshape an ecosystem.
BiomagnificationCompared with: It concerns effects transmitted through food webs, while biomagnification concerns contaminant concentrations.
CarnivoryRelated: Changes in carnivore populations can indirectly alter plants and other ecosystem components.
PoachingRelated: Removing predators or herbivores through poaching can reshape food webs.
Marine ecosystemRelated: Predator changes can reshape marine communities through effects on prey and lower food-web levels.
Ecosystem-based fisheries managementRelated: Harvesting predators or prey can restructure the food web through cascading effects.
EcosystemBroader topic: A change in predators or consumers can indirectly reshape ecosystem populations and vegetation.
Kelp forestRelated: Predators can affect kelp by changing the abundance or behavior of grazers.
Ecosystem engineerRelated: Engineering can alter habitat conditions that indirectly change food-web interactions.
Aquatic food webRelated: A change to one feeding link can reshape several levels of the web.
Ecosystem engineeringCompared with: It changes habitats through food-web effects rather than direct physical modification.
Soil food webRelated: Changes in soil predators can alter grazers, microbes, and ultimately decomposition rates.
Gray wolfRelated: Changes in wolf numbers can affect prey and, indirectly, plants and other species.
Aquatic plantRelated: Changes in plant cover alter shelter and feeding conditions for aquatic animals.
CarnivoreRelated: Changes in carnivore abundance can indirectly alter plants and other consumers.
PiscivoryRelated: Changes in piscivore numbers can indirectly alter fish prey and lower trophic levels.
AccipitridaeRelated: Changes in top accipitrid populations can alter prey abundance and behavior.
BovidaeRelated: Large bovid grazers can alter vegetation and habitat for other species.
HuntingRelated: Removing or reducing hunted predators can alter prey abundance and vegetation.
Atlantic codRelated: Changes in cod abundance can alter prey populations and indirectly affect lower food-web levels.
Invasive species managementRelated: Removing an invasive predator or herbivore can trigger indirect changes throughout a food web.
Sea otterRelated: Sea otter predation on urchins can cascade through kelp forest food webs.
MegafaunaRelated: Removing large herbivores or predators can trigger cascading changes in vegetation and food webs.
Pelagic fishRelated: Changes in pelagic fish abundance can alter predator and prey populations.
Arctic foxRelated: Fox predation can influence prey populations and the animals that depend on them.