Linked from
The 89 pages that link to Biogeography, each with the reason it gives.
Plate tectonicsRelated: Moving continents explained the matching fossils and disjoint distributions Wegener cited.
Natural historyRelated: Records of where organisms occur provide evidence for distribution patterns.
PaleoecologyRelated: Fossil distributions show how ranges shifted with climate and environmental change.
PaleobiologyRelated: Fossil locations track how lineages and ecosystems shifted across continents.
Alexander von HumboldtRelated: Humboldt’s comparisons of plants across regions helped establish this field.
EcologyRelated: It explains why ecological patterns differ among places.
Köppen climate classificationRelated: Climate classes help describe broad environmental conditions associated with regional vegetation.
Landscape ecologyRelated: Biogeography shares a spatial focus but commonly emphasizes distributions across broader regions and history.
Common descentRelated: Species distributions can preserve clues about the locations and movements of ancestral lineages.
Ernst HaeckelRelated: Haeckel’s observations of marine life and species distributions informed his evolutionary thinking.
Physical geographyRelated: It traces how organisms and ecological communities vary across places.
CryptozoologyRelated: A creature’s proposed range can be checked against habitat and known species distributions.
Cave ecologyRelated: Cave species' isolated distributions raise questions about dispersal and historical connections.
CladeRelated: Clade relationships can reveal dispersal, isolation, and the history of regions.
Bayesian phylogeneticsRelated: Bayesian phylogenetic models can estimate ancestral ranges and historical dispersal from dated trees.
PhylogeographyRelated: Phylogeography adds genetic ancestry to biogeographic accounts of distributions.
PoikilothermyRelated: Temperature dependence helps shape where poikilothermic species can persist.
Thermal ecologyRelated: Temperature helps set the geographic limits and patterns of species distributions.
Regional geographyRelated: Species and ecosystem distributions supply evidence about regional environments.
ZoologyRelated: Animal distributions help explain dispersal, isolation, and environmental adaptation.
Bird-of-paradiseRelated: Island distributions help explain the family’s diversification and range.
Earth scienceRelated: It connects Earth’s environments and history with where life occurs.
Environmental microbiologyRelated: It frames questions about how microbial communities vary among places and environments.
Scientific expeditionRelated: Expedition observations across regions provide evidence for patterns of species distribution.
VegetationRelated: Biogeographic patterns help explain where different vegetation occurs.
JuncaceaeRelated: Rushes occur on every continent, with species distributions shaped by habitat and evolutionary history.
VaranidaeRelated: The family's spread across Africa, Asia, and Australia raises questions about dispersal and isolation.
AmphisbaeniaRelated: Their varied distribution across the Americas, Africa, and parts of Europe raises questions about dispersal and history.
Insect collectingRelated: Specimen labels reveal where species occur and how their ranges change.
ZingiberalesRelated: The order’s present distributions reflect dispersal and diversification across tropical regions.
HalobatesRelated: Halobates species occupy tropical and subtropical seas, offering clues to dispersal and ocean barriers.
IguanidaeRelated: Iguanid distributions across the Americas and islands bear on their evolutionary history.
PeninsulaRelated: Peninsulas can connect habitats while their coastlines limit movement.
Albert GüntherRelated: Günther’s regional accounts of fishes and reptiles connected classification with distribution.
AsteralesRelated: Asterales’ worldwide range and regional family patterns are biogeographic evidence.
New World quailRelated: It helps explain the family’s diversification across the varied landscapes of the Americas.
SchizomidaRelated: Their restricted ranges help reveal patterns of tropical diversification and endemism.
Eugenius WarmingRelated: Warming’s work linked vegetation patterns to climate and geography.
Lorentz National ParkRelated: Lorentz’s varied elevations offer a natural setting for studying species distributions.
PalpigradiRelated: Fragmentary records make the global distribution and dispersal history of palpigrades difficult to reconstruct.
PrimulaRelated: The genus’s Northern Hemisphere distribution reflects its evolutionary history and dispersal.
RhynchosauriaRelated: Rhynchosaur fossil distributions track changing connections among Triassic land regions.
Wladimir KöppenRelated: Köppen’s early classifications linked climate boundaries with the distribution of vegetation.
MelastomataceaeRelated: The family's distribution across tropical regions raises questions about dispersal and diversification.
UnenlagiinaeRelated: The clade’s southern fossil distribution informs hypotheses about dinosaur dispersal and isolation.
Walter Baldwin SpencerRelated: Spencer’s zoological research in Australia addressed how animal life was distributed across the continent.
Armen TakhtajanRelated: His account of flowering-plant dispersal linked evolutionary history to geographic patterns.
BioclimatologyRelated: It investigates distribution patterns that climatic conditions help explain.
History of ecologyRelated: Questions about species distributions helped establish ecology’s spatial foundations.
Johann Jakob HeckelRelated: Regional fish records such as Heckel’s inform accounts of species distributions.