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Bergmann's body size rule operates in facultatively endothermic insects: evidence from a complex of cryptic bumblebee species
According to Bergmann’s rule we expect species with larger body size to inhabit locations with a cooler climate, where they may be well adapted to conserve heat and resist starvation. This rule is gen
NIAID Data Ecosystem90
Latitudinal body size trends in Oligo-Miocene mammals
Paleecological data allow not only the study of trends along deep-time chronological transects but can also be used to reconstruct ecological gradients through time, which can help identify causal fac
NIAID Data Ecosystem70
Data from: Patterns of size variation in bees at a continental scale: does Bergmann’s rule apply?
Body size latitudinal clines have been widley explained by the Bergmann’s rule in homeothermic vertebrates. However, there is no general consensus in poikilotherms organisms in particular in insects t
DataONE2018-01-16 更新60
The cold-water connection: Bergmann's rule in North American freshwater fishes
Understanding general rules governing macroecological body size variations is one of the oldest pursuits in ecology. However, this science has been dominated by studies of terrestrial vertebrates, spu
NIAID Data Ecosystem90
Where are we now? Bergmann's Rule sensu lato in insects
Bergmann's rule states that individuals of a species/clade at higher altitudes or latitudes will be larger than species at lower ones. A systemic review of the known literature on inter- and intraspec
NIAID Data Ecosystem70



