Not a fact anymore

Mammalian spinal evolution was a simple transition from reptile-like side-to-side bending in early synapsids to mammal-like up-and-down bending.

What we know now

Fossil synapsid vertebrae do not support a simple shift from lizard-like side-to-side bending to mammal-like up-and-down bending. Early synapsids appear to have had relatively stiff spines, with later mammals evolving several kinds of regional movement and specialization.

Why it changed

The old model used living reptiles as stand-ins for early synapsids because both had sprawling limbs. Three-dimensional comparisons of fossil vertebrae showed that early synapsids occupied a different functional range from both modern reptiles and mammals.

Status
Superseded
Category
Evolution
Accepted for
Not quantified
Accepted approximately
Long-standing textbook model before 2021
Changed approximately
2021

A common account of mammalian evolution described a simple change in how the spine moved. Early synapsids, which often had sprawling limbs, were thought to bend their backs from side to side like living lizards. Mammals later evolved more up-and-down, or sagittal, flexion.

That story depended heavily on using modern reptiles as analogues for extinct synapsids. In 2021, researchers compared the three-dimensional shapes of fossil synapsid vertebrae with those of living reptiles and mammals.

The fossils did not fit a smooth reptile-to-mammal progression. Early synapsid vertebrae appear to have been relatively stiff, rather than strongly adapted for lizard-like lateral bending. Later mammalian evolution added different kinds of movement in different parts of the spine, including sagittal flexion, twisting and stronger regional specialization.

A 2024 follow-up used digital bending experiments and reached a similar result: the ancestral synapsid spine was comparatively stiff, and mammalian spinal function developed through several regional changes rather than one wholesale switch.

The endpoints were not the main problem with the older model. Mammals did evolve distinctive spinal movements. The mistake was assuming that their ancestors moved like living lizards and that one type of bending simply gave way to another.

Evidence

Sources and what they establish

Previous belief

Primary research

Current evidence

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