Medusinites

Medusinites
Temporal range: 580–541 Ma
Medusinites asteroides from the Ediacaran Ediacara Member of the Rawnsley Quartzite in the Ediacara Hills, South Australia on display at the US. National Museum, Washington
Scientific classification
Kingdom:
Phylum:
Class:
Cyclozoa
Genus:
Medusinites
Species
  • M. applanatus
  • M. asteroides
  • M. paliji

Medusinites is a genus of disc shaped fossilised organisms associated with the Ediacaran biota. They have been found in rocks dated to be 580 to 541 million years old.[1]

Biology

Only three distinct species of Medusinites are known.[1] They are similar to Protolyella in form and have an inner and outer ring.[2] Specimens are typically 1–5 cm in diameter and the radius of its central disc is smaller than the width of the outer ring.[2] They also have radial furrows and concentric circle features, but those details are not always preserved.[2] They have been described as possibly living a lifestyle similar to a "stationary intermediate-level epifaunal osmotroph".[3]

Medusinites asteroides from the Ediacaran Ediacara Member of the Rawnsley Quartzite in the Ediacara Hills, South Australia on display at the Western Australian Museum, Perth.

Distribution

Medusinites species have been found in Australia, Canada, Norway, India, and Algeria.[1][4] They are often found in sandstone and quartzite.[5]

Classification

Medusinites are in the Phylum Cnidaria, which means they are related to other genera such as Aspidella and Cloudinidae,[6] and are essentially classified as eumetazoans, just like modern jellyfish.[6] However, there have been several differing theories over the years about the placement of Medusinites, as well as the Ediacaran biota as a whole, and how many species there are within the genus. Several species within Medusinites have been moved to other genera or absorbed into other existing species, such as M. patellaris, which was found to be a junior holotype for an Aspidella sp.,[4] and M. mawsoni, which was assimilated into M. asteroides.[2] Regarding the debate over the nature of disc shaped Ediacaran fossils like Medusinites, there are two main opposing points of view. A. Seilacher views the theory of them being soft bodied and jellyfish-like as problematic and suggests that they were more likely a unique type of organism that had a "quilted" construction.[7] Another view supported by Grazhdankin and Gerdes is that they were possibly a type of microbial colony.[8]

References

  1. ^ a b c "PBDB". paleobiodb.org. Retrieved 2018-06-09.
  2. ^ a b c d . 2013-09-22 https://web.archive.org/web/20130922230714/http://palaeontology.palass-pubs.org/pdf/Vol%209/Pages%20599-628.pdf. Archived from the original (PDF) on 2013-09-22. Retrieved 2018-06-09. {{cite web}}: Missing or empty |title= (help)
  3. ^ "PBDB". paleobiodb.org. Retrieved 2018-06-09.
  4. ^ a b Gehling, James G.; Narbonne, Guy M.; Anderson, Michael M. (September 2000). "The first named Ediacaran body fossil,Aspidella Terranovica". Palaeontology. 43 (3): 427–456. Bibcode:2000Palgy..43..427G. doi:10.1111/j.0031-0239.2000.00134.x. ISSN 0031-0239.
  5. ^ Glaessner; et al. (1966). "The Late Precambrian Fossils from Ediacara, South Australia". Palaeontology. 9: 599–628.
  6. ^ a b "Medusinites - Classifications - Encyclopedia of Life". Encyclopedia of Life. Retrieved 2018-06-10.
  7. ^ Seilacher, A. (1992-07-01). "Vendobionta and Psammocorallia: lost constructions of Precambrian evolution". Journal of the Geological Society. 149 (4): 607–613. Bibcode:1992JGSoc.149..607S. doi:10.1144/gsjgs.149.4.0607. ISSN 0016-7649. S2CID 128681462.
  8. ^ Grazhdankin and Gerdes (2007). "Ediacaran microbial colonies". Lethaia. 40 (3): 201–210. Bibcode:2007Letha..40..201G. doi:10.1111/j.1502-3931.2007.00025.x.
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