Honey bees (Apidae) evolved from predatory, solitary wasp-like ancestors related to modern sphecid wasps. Somewhere around the mid-Cretaceous, some wasp lineages switched from hunting insect prey to provisioning their nests with pollen and nectar from the newly radiating flowering plants (angiosperms) — the origin of bees. This scene morphs a single specimen across that timeline and grows a colony around it to show how solitary nesting gradually gave way to complex eusocial hives.
The oldest widely accepted bee fossil, Cretotrigona prisca, is about 65–70 million years old and already shows features of a stingless, eusocial corbiculate bee — meaning key social traits were in place before the dinosaurs went extinct. Genetic studies suggest the true origin of bees as a lineage may be older still, close to the 125-million-year radiation of flowering plants.
A single morphing specimen and its growing colony trace 125 million years of honey bee evolution — from a solitary, prey-hunting wasp-like ancestor to a fuzzy, pollen-basketed, eusocial honey bee.
Body shape, hair density, pollen-basket anatomy, colony size and even the surrounding flora all shift together as you scrub the timeline, showing how these traits evolved as a linked package alongside flowering plants.
Drag the time slider to travel between 125 million years ago and today. Set a target colony size, then toggle pollen baskets and flowering-plant coevolution on or off to compare eras side by side.
The oldest confirmed bee fossil, Cretotrigona prisca, is roughly 65–70 million years old and already shows the anatomy of a stingless, eusocial corbiculate bee — social living predates the honey bee genus Apis itself.