Linked from
The 45 pages that link to Wind pollination, each with the reason it gives.
ConiferRelated: Most conifers rely on wind to carry pollen from pollen cones to ovules.
PollenBroader topic: This is one major route by which pollen reaches receptive structures.
PinaceaeRelated: Pinaceae pollen travels through air from pollen cones to seed cones.
MonoecyRelated: Many monoecious plants use wind to move pollen from male to female flowers.
CatkinRelated: Catkins commonly expose pollen or stigmas to moving air.
Conifer coneRelated: Many conifers release abundant, lightweight pollen into the wind.
FagaceaeRelated: Many Fagaceae species release pollen into the air from inconspicuous flowers.
Pollen coneRelated: Air currents commonly carry pollen from conifer cones to ovulate cones.
UlmaceaeRelated: Elm flowers release pollen into the air, often before the leaves emerge.
PinusRelated: Pines release abundant airborne pollen that can reach ovules on other trees.
BetulaceaeRelated: Pollen released from the family’s catkins is commonly carried by wind.
PineRelated: Pine pollen travels from male cones to ovules in seed cones through the air.
AbiesRelated: Abies pollen travels through the air from pollen cones to seed cones.
FagalesRelated: Many Fagales rely on airborne pollen rather than animal pollinators.
JuglandaceaeRelated: Many family members rely on wind rather than animal visitors to deliver pollen.
PoalesRelated: Many grasses and sedges release airborne pollen from inconspicuous flowers.
Ginkgo bilobaRelated: Ginkgo relies on wind to move pollen between separate male and female trees.
PiceaRelated: Spruce pollen travels through the air from pollen cones to receptive seed cones.
CedrusRelated: Cedar pollen travels through the air rather than relying on animal pollinators.
JuniperBroader topic: Junipers release airborne pollen rather than relying on animal pollinators.
LarchRelated: Larch pollen travels by wind rather than relying on animal pollinators.
Araucaria araucanaRelated: Wind carries pollen from male cones to female cones.
Picea abiesRelated: Its pollen travels on the wind to female cones.
Betula papyriferaRelated: Its airborne pollen enables reproduction without insect pollinators.
Carya glabraRelated: Pignut hickory relies on wind to move pollen between its flowers.
JuncusRelated: Many rushes have inconspicuous flowers suited to wind-mediated pollen transfer.
Populus trichocarpaRelated: Black cottonwood releases airborne pollen from its male flowers.
Typha latifoliaRelated: Its male flowers release pollen into the air above the female spike.
Cupressus sempervirensRelated: Air currents carry pollen from male cones to female cones.
Pinus elliottiiRelated: Slash pine releases airborne pollen to fertilize ovules in female cones.
Pinus strobusRelated: Its pollen travels through the air to reach receptive female cones.
Populus tremulaRelated: Aspen relies on airborne pollen rather than animal pollinators.