Search bioRxiv⌕ Search

bioRxiv · 10.1101/2025.04.10.648273

THE FUNCTION AND EVOLUTION OF STEGOSAUR OSTEODERMS AND HYPOTHESIZED SEXUAL DIMORPHISM IN HESPEROSAURUS

Abstract

Stegosaurus is one of the most iconic organisms in Earths history due to its impressive dermal osteoderms. These consisted of throat ossicles, two pairs of posterior tail spikes, and an estimated 18 large plates arranged in two staggered rows along the neck, back, and tail. The function and evolution of these structures in stegosaurs is a quintessential question in dinosaur paleontology. Although sociosexual display has become a popular explanation of plate function, sexual dimorphism in dinosaurs has been a contentious topic. Spikes are meanwhile often described as defensive structures, but we consider an additional intra-sex combat function worthy of further study. To investigate the questions surrounding stegosaur osteoderms, we reevaluate variation in North American stegosaur osteoderms, with attention to hypothesized sexual dimorphism in Hesperosaurus, a close relative of Stegosaurus with similar osteoderms. We correct errors in previous analyses, address challenges of the dimorphism hypothesis, and use outline analysis and effect size statistics to provide further statistical support that one sex possibly had larger, wide/broad plates (hypothesized male), while the other sex had smaller, tall/narrow plates (hypothesized female). Stegosaur plates are a difficult case study for sexual variation because the multiple plates borne by a single individual can result in datasets that violate assumptions of independence. Despite appreciable variation from head to tail along an individual, the variation in size and shape seen in Hesperosaurus plates is still consistent with the presence of sexual variation as evidenced by both size-independent, two-dimensional outline analysis as well as size-versus-shape regression analysis of principal component data, with high confidence in the latter. We note pathologies on stegosaur caudal vertebrae, particularly in old adults of wide-morph Hesperosaurus, as well as in Stegosaurus tail spikes. These pathologies are consistent with not just predator-prey interactions but also intraspecific combat. There currently is no unambiguous indication of dimorphism in stegosaur thagomizers because alternative hypotheses, such as ontogenetic or interspecific variation, are not yet fully tested. Finally, we present a hypothetical model of stegosaur osteoderm evolution and function based on fossil and extant evidence. Osteoderms adapted for defense in earlier thyreophorans likely became exapted for sexual display (i.e., plates) and intra-sex combat (e.g., tail spikes in stegosaurs, clubs in ankylosaurs). Therefore, sexual selection may have initiated the differentiation of plates from the terminal thagomizer and induced the unique asymmetry of staggered plates in Stegosaurus and Hesperosaurus. Osteoderm development in hypothesized males could have been driven to physiological upper limits by sexual selection, while the intensity of predation pressure dictated osteoderm development in hypothesized females. Increasing predation pressure might correlate with large body size, open habitats, spine-like plate processes, long tail spikes, and gular ossicles. Within this hypothetical evolutionary model, Hesperosaurus would represent a stegosaur taxon with a high magnitude of sexual dimorphism, consistent with its smaller body size, rounder plates, presumed lack of gular ossicles, and niche occupation within a wet, forested, vegetation-rich habitat in the northern Morrison foreland basin. The question of stegosaur plate function requires us to look more broadly at thyreophoran osteoderm variation and evolution and to consider complex, multifactor models that incorporate many previously proposed hypotheses. We must sort between primary versus secondary functions of plates, spikes, and ossicles and how these functions changed over time.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Saitta, E. T., Bonhomme, V., Lukens, M., Vidal, D., Longrich, N. R., Richmond, D. R., Stockdale, M. T.. 2025-04-16. THE FUNCTION AND EVOLUTION OF STEGOSAUR OSTEODERMS AND HYPOTHESIZED SEXUAL DIMORPHISM IN HESPEROSAURUS. https://doi.org/10.1101/2025.04.10.648273

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related preprints

Constraining Palaeogeography and Palaeotides for the Cambrian using cnidarian medusae

The ocean tides influence key Earth system processes at a range of spatial and temporal scales. It is known that the geometry of ocean basins is the leading controller of tidal energetics, so well-constrained palaeogeographic reconstructions and tidal properties for Earths past are imperative when investigating other Earth system processes. Here, we present a novel way to constrain both deep-time tidal model results and reconstructions, by combining palaeoecology with sedimentology. We compare new palaeo-tidal model simulations for the Cambrian period, significant for the early origin and radiation of major animal fauna, to tidal proxies. One of the most abundant soft-bodied organisms preserved during this time are cnidarian medusae (jellyfish). A total of 17 cnidarian medusae localities were obtained through the literature, which had an adequate global distribution and occurred at regular intervals throughout the period of study. In some locations there were also estimates of palaeo-tidal range. Our results show a good agreement between the simulations and proxy data. In the few locations where there is disagreement, it is proposed that the palaeogeographic reconstructions are missing details, e.g., island chains, and our results allow for the palaeogeographic reconstructions to be improved. The proxy method presented is promising and can be applied to other time-periods with different marine fossils, particularly at evolutionary and extinction periods where the marginal marine environment is of importance.

paleontology↗

Homology of the dark cells of Paleozoic liverworts with the specialized oil body cells of modern liverworts (Marchantiophyta)

O_LIOil bodies are a synapomorphy of liverworts (Marchantiophyta), a major group of land plants with a sparse fossil record. Paleozoic liverworts sometimes possess dark cells that appear similar in distribution to liverwort oil body cells. The Middle Devonian Metzgeriothallus sharonae provides an opportunity for comparison with modern liverworts. C_LIO_LIShale samples were collected and the carbonaceous fossils isolated by acid maceration. Museum shale specimens of Pallaviciniites devonicus were also obtained and processed. The relative location, composition, frequency and spatial distribution of the fossil dark cells was compared to that of oil cells in extant taxa. C_LIO_LIChemical characterization of the fossil dark cells is consistent with cells that contained lipids, the main component of oil bodies. Quantitative analyses revealed that the frequency and spatial distribution of dark cells are comparable to oil body cells. The dark cells of M. sharonae show clumping near the thallus edge, suggesting an anti-herbivore function. C_LIO_LIThese results support the hypothesis that the dark cells of Paleozoic liverworts and the oil body cells of extant lineages are homologous structures with a shared developmental origin, providing a new character that can be used to assign fossils and that sheds light on the evolution and function of liverwort oil bodies. C_LI

paleontology↗

A comprehensive identification protocol for postcranial bones of Southeast Asian Ruminantia. Part 1: Osteometry

AO_SCPLOWBSTRACTC_SCPLOWTaxonomic identification of animal bone remains from archaeological and paleontological contexts is usually conducted by comparison with modern skeletal specimens, an approach that is relatively straightforward in temperate or insular regions. In contrast, it is more challenging in continental tropical areas, where rich biodiversity makes it difficult to assemble exhaustive modern references. This situation is well illustrated in continental Southeast Asia, where studies of large mammal assemblages have largely focused on teeth and cranial elements, while postcranial remains are rarely investigated. To address this issue, we established an osteometric reference dataset of the limb bones from Southeast Asian ruminant species and analyzed both the potential of raw measurements and osteometric ratios to identify the different taxa. The results reveal significant differences between genera and species, allowing size-based grouping and precise taxonomic identification in some cases. These data were subsequently used to develop an easy-to-use identification tool based solely on measurements. The performance of this tool was tested against previously published datasets, allowing confirmation of existing results, and discussion of potential biases associated with identification based on measurements alone. This new methodological framework provides a solid foundation to be combined with qualitative morphological criteria to enhance the precision and robustness of the taxonomic identifications of subfossil bones from continental southeast Asia.

paleontology↗