Radial porosity profiles: a new bone histological method for comparative developmental analysis of diametric limb bone growth

Author:

Prondvai Edina12ORCID,Kocsis Adam T.3ORCID,Abourachid Anick4,Adriaens Dominique5ORCID,Godefroit Pascal6,Hu Dong-Yu78,Butler Richard J.1ORCID

Affiliation:

1. School of Geography, Earth and Environmental Sciences, University of Birmingham, Edgbaston, Birmingham, UK

2. MTA-MTM-ELTE Research Group for Paleontology, Budapest, Hungary

3. Department of Palaeobiology, Friedrich-Alexander-University of Erlangen-Nürnberg, Erlangen, Germany

4. Département Adaptations du Vivant, UMR 7179 Muséum National d'Histoire Naturelle – CNRS, Paris, France

5. Department of Biology, Evolutionary Morphology of Vertebrates, Ghent University, Ghent, Belgium

6. Directorate Earth and History of Life, Royal Belgian Institute of Natural Sciences, Brussels, Belgium

7. Key Laboratory for Evolution of Past Life in Northeast Asia, Ministry of Land and Resources, Paleontological Institute of Shenyang Normal University, Shenyang, People's Republic of China

8. Paleontological Museum of Liaoning, Shenyang, People's Republic of China

Abstract

In fossil tetrapods, limb bone histology is considered the most reliable tool not only for inferring skeletal maturity—a crucial assessment in palaeobiological and evolutionary studies—but also for evaluating the growth dynamics within the ontogenetic window represented by the primary bone cortex. Due to its complex relationship with bone growth and functional maturation, primary cortical vascularity is an indispensable osteohistological character for reconstructing growth dynamics, especially in the context of various developmental strategies along the precocial–altricial spectrum. Using this concept as our working hypothesis, we developed a new quantitative osteohistological parameter, radial porosity profile (RPP), that captures relative cortical porosity changes in limb bones as trajectories. We built a proof-of-concept RPP dataset on extant birds, then added fossil paravian dinosaurs and performed a set of trajectory-grouping analyses to identify potential RPP categories and evaluate them in the context of our ontogeny—developmental strategy working hypothesis. We found that RPPs, indeed, reflect important developmental features within and across elements, specimens and taxa, supporting their analytical power. Our RPPs also revealed unexpected potential osteohistological correlates of growth and functional development of limb bones. The diverse potential applications of RPPs open up new research directions in the evolution of locomotor ontogeny.

Funder

NSFC

ATM MNHN

Bijzonders Onderzoeksfonds - Universiteit Gent

PEPS CNRS

Fonds Wetenschapelijk Onderzoeks (FWO) – Vlaanderen

H2020 Marie Skłodowska-Curie Actions

MTA-MTM-ELTE Paleo Contribution

Publisher

The Royal Society

Subject

Multidisciplinary

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