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A new sponge from the Marjum Formation of Utah documents the Cambrian origin of the hexactinellid body plan. | LitMetric

AI Article Synopsis

  • Modern poriferans are divided into four classes based on spicule structure, but classifying fossil specimens is complicated due to their varied forms and structures.
  • Fossils from early periods, notably those from the Cambrian and Ordovician, show features—like hexactine spicules—that don't fit neatly into current classifications of modern sponges.
  • A newly identified poriferan from the Drumian Marjum Formation in Utah displays unique anatomical features, suggesting that the body plan of hexactinellids may have originated much earlier than previously thought, shedding light on the evolution of early glass sponges.

Article Abstract

Modern poriferans are classified into four classes-Calcarea, Demospongiae, Hexactinellida and Homoscleromorpha-the recognition of which in fossil specimens almost exclusively relies on spicule morphology and arrangement. Early fossil representatives of the phylum Porifera are morphologically diverse, and many of them problematically display characteristics that are incompatible with the classification scheme developed for modern taxa. Critically, hexactine spicules-a diagnostic feature of hexactinellids among modern taxa-are found in various Cambrian and Ordovician taxa that cannot be accommodated within the hexactinellid body plan. Here we describe a new poriferan from the Drumian Marjum Formation of Utah, gen. et sp. nov., which exhibits a unique combination of complex anatomical features for a Cambrian form, including a syconoid-like organization, a thick body wall, and a multi-layered hexactin-based skeleton. The hexactinellid-like body wall architecture of this new species supports a Cambrian origin of the hexactinellid body plan and provides valuable insights into character evolution in early glass sponges.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11407857PMC
http://dx.doi.org/10.1098/rsos.231845DOI Listing

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