Diverse growth rates in Triassic archosaurs-insights from a small terrestrial Middle Triassic pseudosuchian.

Naturwissenschaften

Institute of Geosciences, Paleontology, University of Bonn, Bonn, Germany.

Published: July 2024


Article Synopsis

  • Benggwigwishingasuchus eremacarminis, a small pseudosuchian from the Middle Triassic, shows no signs of adaptations for aquatic life, suggesting it led a primarily terrestrial lifestyle.
  • Its bone structure features a well-organized, vascularized matrix with slow growth rates that resemble those of crocodylomorphs, indicating a low resting metabolic rate.
  • The study highlights that growth rates among early archosaurs are likely influenced more by environmental factors and body size than by evolutionary relationships, exemplifying the variability observed in Triassic species.

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Article Abstract

The small pseudosuchian Benggwigwishingasuchus eremacarminis was found in Anisian (Middle Triassic) marine sediments. Neither the skeleton nor osteohistology or microanatomy shows any secondary aquatic adaptations, and a dominantly terrestrial lifestyle of this new taxon is evident. Bone tissue consists of a scaffold of parallel-fibered matrix, which is moderately vascularized by small, mainly longitudinal primary osteons. The innermost cortex is less densely vascularized and more highly organized. No parts of the cortex contain any woven bone. The cortex is regularly stratified by annual growth marks. Bone tissue and growth pattern indicate an adult individual that has had slow growth rates throughout its ontogeny. Tissue type, slow growth rate, and inferred low resting metabolic rate of Benggwigwishingasuchus are similar to that of crocodylomorphs but differ from that of Sillosuchus and Effigia, poposaurids to which Benggwigwishingasuchus is related based on phylogenetic analyses. However, according to current knowledge, growth rates in early archosaurs are more likely influenced by body size and environment than by phylogeny. Benggwigwishingasuchus is thus another example of unpredictable variability in growth rates within Triassic archosaurs.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11239758PMC
http://dx.doi.org/10.1007/s00114-024-01918-4DOI Listing

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