Not a fact anymore

Early tetrapods grew slowly or moderately, like modern amphibians; rapid juvenile growth evolved later with amniotes.

What we know now

Rapid juvenile growth was already present in some stem tetrapods more than 320 million years ago. Early tetrapods used a wider range of growth strategies than the old amphibian-like ancestral model allowed.

Why it changed

Bone histology from juvenile Whatcheeria deltae revealed fibrolamellar bone, a tissue associated with rapid growth, even though mature individuals largely lost that early-growth signature through remodeling.

Status
Narrowed
Category
Evolution
Accepted for
Not quantified
Accepted approximately
Late 20th century–2022
Changed approximately
2022

Early tetrapods have often been reconstructed with a broadly amphibian-like life history. Their ancestral growth rate was thought to be slow or moderate, while faster growth and the high metabolic rates associated with it became important later in amniotes.

A fossil called Whatcheeria deltae complicated that picture.

Whatcheeria lived more than 320 million years ago and sits on the stem leading toward modern tetrapod groups. In 2022, researchers examined the microscopic structure of femora from individuals of different sizes. The smallest animals contained fibrolamellar bone, a rapidly deposited tissue associated with fast juvenile growth.

That signal was easy to miss because the bone was heavily remodeled as the animals matured. Adults therefore looked more like the slow-growing stem tetrapods that had shaped the earlier picture.

The finding does not show that all early tetrapods grew quickly. Other stem tetrapods still show slower patterns. It shows that rapid juvenile growth was already part of the group’s evolutionary repertoire and did not first appear with amniotes.

Evidence

Sources and what they establish

Primary research

Current evidence

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