Skip to main navigation Skip to search Skip to main content

A heavyweight early whale pushes the boundaries of vertebrate morphology

  • Giovanni Bianucci
  • , Olivier Lambert
  • , Mario Urbina
  • , Marco Merella
  • , Alberto Collareta
  • , Rebecca Bennion
  • , Rodolfo Salas-Gismondi
  • , Aldo Benites-Palomino
  • , Klaas Post
  • , Christian de Muizon
  • , Giulia Bosio
  • , Claudio Di Celma
  • , Elisa Malinverno
  • , Pietro Paolo Pierantoni
  • , Igor Maria Villa
  • , Eli Amson
  • Università di Pisa
  • Institut Royal des Sciences Naturelles de Belgique
  • Univ. Nacional Mayor de San Marcos
  • Université de Liège
  • University of Zurich
  • Natuurhistorisch Museum Rotterdam
  • CNRS-IRD-MNHN-Sorbonne Universités (UPMC)
  • University of Milan Bicocca
  • University of Camerino
  • Universität Bern
  • Staatliches Museum für Naturkunde Stuttgart

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

The fossil record of cetaceans documents how terrestrial animals acquired extreme adaptations and transitioned to a fully aquatic lifestyle 1,2. In whales, this is associated with a substantial increase in maximum body size. Although an elongate body was acquired early in cetacean evolution 3, the maximum body mass of baleen whales reflects a recent diversification that culminated in the blue whale 4. More generally, hitherto known gigantism among aquatic tetrapods evolved within pelagic, active swimmers. Here we describe Perucetus colossus—a basilosaurid whale from the middle Eocene epoch of Peru. It displays, to our knowledge, the highest degree of bone mass increase known to date, an adaptation associated with shallow diving 5. The estimated skeletal mass of P. colossus exceeds that of any known mammal or aquatic vertebrate. We show that the bone structure specializations of aquatic mammals are reflected in the scaling of skeletal fraction (skeletal mass versus whole-body mass) across the entire disparity of amniotes. We use the skeletal fraction to estimate the body mass of P. colossus, which proves to be a contender for the title of heaviest animal on record. Cetacean peak body mass had already been reached around 30 million years before previously assumed, in a coastal context in which primary productivity was particularly high.

Original languageEnglish
Pages (from-to)824-829
Number of pages6
JournalNature
Volume620
Issue number7975
DOIs
StatePublished - 24 Aug 2023

Fingerprint

Dive into the research topics of 'A heavyweight early whale pushes the boundaries of vertebrate morphology'. Together they form a unique fingerprint.

Cite this