Growth pattern and functional morphology of the fossil sponge Leptomitus teretiusculus from the Cambrian of western Hunan
ID:47 View Protection:ATTENDEE Updated Time:2025-05-21 16:49:41 Hits:172 Oral Presentation

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Abstract
Leptomitiids are some of the most iconic sponge fossils from Cambrian shale Lagerstätten, which had an effectively cosmopolitan distribution during the early and middle Cambrian. However, due to the slender and elongated shape, leptomitiids are rarely preserved as complete fossils, which, in turn, hindered the study of their ontogeny and ecological adaptive strategies. Based on 97 newly discovered and exceptionally preserved specimens of Leptomitus teretiusculus from western Hunan Province, we demonstrate for the first time that L. teretiusculus exhibits allometric growth in the size range from 1.47 to 12.49 mm in width. In addition, the stably repeated and completely preserved morphology in these fossils enables us to explore the potential hydrodynamic benefits of the body plan of L. teretiusculus through computational fluid dynamics simulations. The results indicate that the distinctive morphology of L. teretiusculus yields a lower drag coefficient and reduced fluctuations in lift force compared to a straight tube. Together with sufficient buoyancy, these factors enhance the structure's dynamic stability, minimizing fatigue at the junction between the holdfast and the substrate and thereby reducing the risk of holdfasting failure. In previous studies, leptomitiids have been interpreted as shallow sediment stickers with ineffective anchoring mechanisms, exhibiting limited adaptive capacity to colonize Phanerozoic-style soft substrates characterized by bioturbation-generated mixed layers (Dornbos et al., 2005). The distinctive morphological adaptations of leptomitiids partially compensated for their simple attachment systems. This hydrodynamic mechanism may represent a generalized adaptive strategy shared by many other Cambrian sponges exhibiting a tapered base, which significantly promoted their anchoring stability and ensured the survival in diverse dynamic environments, eventually enhancing their evolutionary persistance.
 
Keywords
computational fluid dynamics,Cambrian,porifera
Speaker
彦杰 洪
student 中国科学院大学(南京地质古生物研究所)

Submission Author
彦杰 洪 中国科学院大学(南京地质古生物研究所)
Cui Luo Chinese Academy of Sciences;Nanjing Institute of Geology and Palaeontology
Zekun Wang Natural History Museum
晗 曾 中国科学院南京地质古生物研究所
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Important Date
  • Conference Date

    Jun 10

    2025

    to

    Jun 13

    2025

  • Apr 15 2025

    Draft paper submission deadline

Sponsored By
National Natural Science Foundation of China
Geobiology Society
National Committee of Stratigraphy of China
Ministry of Science and Technology
Geological Society of China
Paleontological Society of China
Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences (CAS)
Institute of Vertebrate Paleontology and Paleoanthropology, CAS
International Commission on Stratigraphy
International Paleontological Association
Organized By
State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences (CUG, Wuhan)
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