Linked from
The 34 pages that link to Paleobotany, each with the reason it gives.
PaleontologyBroader topic: Ancient plants illuminate past ecosystems, climate, and the evolution of terrestrial life.
EoceneRelated: Eocene leaves and pollen reveal vegetation, rainfall, and climate across ancient landscapes.
PaleoecologyBroader topic: Plant fossils reveal past vegetation, primary productivity, and habitat structure.
PaleobiologyBroader topic: Plant fossils reveal the history of vegetation and terrestrial ecosystems.
PaleogeographyRelated: Plant fossils indicate ancient environments and provide clues to continental position and climate.
OrnithischiaRelated: Fossil plant communities help reconstruct the diets and habitats of ornithischians.
Seed plantNarrower topic: Fossil evidence underpins reconstructions of seed-plant origins and diversification.
Plant morphologyNarrower topic: Paleobotany reconstructs extinct plant forms from preserved morphological evidence.
PaleosolRelated: Root traces and organic matter in paleosols preserve evidence of ancient vegetation.
Rhynie chertNarrower topic: Rhynie fossils are central evidence for the early evolution of land plants.
Carboniferous rainforest collapseNarrower topic: Plant fossils reveal the timing and regional variation of forest loss.
GlossopterisNarrower topic: Glossopteris is reconstructed through fossil leaves, wood, roots, and reproductive structures.
CooksoniaNarrower topic: Cooksonia’s anatomy and age are reconstructed from plant fossils and their geological context.
LepidodendronNarrower topic: Lepidodendron fossils let paleobotanists reconstruct swamp vegetation and plant evolution.
BetulaceaeRelated: Fossil pollen and plant remains help trace the family’s history and past distributions.
BotanyRelated: Fossils reveal how plant forms and ecosystems changed through geological time.
Mazon Creek fossil bedsRelated: Its abundant plant remains reveal the vegetation of Carboniferous Illinois.
Plant fossilNarrower topic: Paleobotany uses preserved plant remains to reconstruct past floras and ecosystems.
JuncaceaeRelated: Fossil evidence helps trace the history and diversification of rushes.
NothofagaceaeNarrower topic: Plant fossils provide an independent record for evaluating proposed Nothofagus histories.
RhyniophyteNarrower topic: Rhyniophytes are reconstructed through fossil anatomy and geological context.
DeinotheriumRelated: Plant fossils help test reconstructions of the vegetation available to Deinotherium.
ParaceratheriumRelated: Plant fossils help reconstruct the browse available to Paraceratherium in Oligocene habitats.
DeinotheriidaeRelated: Fossil vegetation helps reconstruct the habitats and food available to deinotheres.
Petrified woodNarrower topic: Petrified wood preserves evidence used to reconstruct ancient plants and ecosystems.
BennettitalesRelated: Fossil leaves and reproductive organs provide the evidence for Bennettitales' history.
CharophytaNarrower topic: Fossil evidence helps reconstruct the history of charophyte algae and their relatives.
CotylorhynchusRelated: Plant fossils from Permian ecosystems help constrain what Cotylorhynchus could have eaten.
LygodiumRelated: Fossil evidence helps situate the evolutionary history of fern lineages such as Lygodium.
PteridospermNarrower topic: Pteridosperms are reconstructed from fossil leaves, seeds, and reproductive organs.
SciadopitysNarrower topic: Fossil plant research reconstructs the genus’s deep-time distribution.
TempskyaNarrower topic: Paleobotanical anatomy is the main evidence used to reconstruct Tempskya.
TrimerophytopsidaRelated: Fossil anatomy and geological context underpin the reconstruction of trimerophyte relationships.
WattiezaNarrower topic: Wattieza’s identity and growth form depend on interpreting fragmented fossil plant remains.