2024_in_paleomalacology

2024 in paleomalacology

2024 in paleomalacology

Overview of the events of 2024 in paleomalacology


This list of fossil molluscs described in 2024 is a list of new taxa of fossil molluscs that were described during the year 2024, as well as other significant discoveries and events related to molluscan paleontology that occurred in 2024.

Quick Facts List of years in paleomalacology ...

Ammonites

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Ammonite research

  • Description of Late Jurassic ammonites from the Spiti Shale Formation of the Spiti and Zanskar regions of the Himalayas (India) is published by Bhosale et al. (2024).[8]
  • A study on changes of conch shape and septal spacing between successive chambers in Cretaceous ammonites from India, Madagascar and Japan throughout their ontogeny, interpreted as indicative of closer phylogenetic relationships between Perisphinctina and Ancyloceratina than with Lytoceratina or Phylloceratina, is published by Nishino et al. (2024).[9]

Other cephalopods

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Other cephalopod research

  • Fossil material of Paraplesioteuthis sagittata and ?Loligosepia sp. indet. from the Toarcian strata of the Causses Basin (France), providing evidence of previously unrecognized diversity of gladius-bearing coleoids in the studied basin, is described by Jattiot et al. (2024), who argue that P. sagittata might have originated in the Mediterranean domain.[15]
  • Serafini et al. (2024) describe nautiloid jaw elements associated with marine reptile carcasses from the strata of the Rosso Ammonitico Veronese (Italy) ranging from the Bajocian to the Kimmeridgian, interpreted as the first unambiguous evidence of nautiloids scavenging Mesozoic marine reptile remains, as well as multiple belemnite specimens associated with the holotype of Neptunidraco ammoniticus, interpreted as likely evidence of mass mortality after spawning.[16]

Bivalves

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Bivalve research

  • Evidence indicative of different dynamics of the rates of origination and net diversification in infaunal and epifaunal bivalves throughout the Phanerozoic is presented by Foote, Edie & Jablonski (2024).[22]
  • A study on the recovery of bivalves in the aftermath of the Permian–Triassic extinction event, providing evidence of an increase in endemicity beginning in the Middle Triassic, is published by Echevarría & Ros-Franch (2024).[23]
  • A study on the evolutionary history of Mediterranean bivalves across the Zanclean-Calabrian interval, providing evidence of less intense and more gradual loss of biodiversity than previously estimated and of more severe loss of biodiversity suspension feeders compared to infaunal deposit feeders, is published by Mondanaro, Dominici & Danise (2024).[24]

Gastropods

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Gastropod research

  • Evidence of preservation of intact polyene pigments in gastropod shells from the Miocene Vienna Basin (Austria and Hungary) is presented by Wolkenstein, Schmidt & Harzhauser (2024).[40]

Other molluscs

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General research

  • Antoine et al. (2024) report the discovery of fossil material from Kourou (French Guiana) providing evidence of the presence of diverse foraminifer, plant and animal communities near the equator in the 130,000-115,000 years ago time interval, including evidence of the presence of a diverse mollusc assemblage indicative of stronger affinities between Guianas and the Caribbean than today.[43]

References

  1. Bockwinkel, J.; Korn, D. (2024). "Ammonoids of the Middle Devonian family Maenioceratidae in the Anti-Atlas of Morocco". European Journal of Taxonomy (921): 1–35. doi:10.5852/ejt.2024.921.2413.
  2. Mitta, V. V. (2024). "The Genus Alatyroceras gen. nov. (Ammonoidea: Cardioceratidae, Arctocephalitinae) from the Upper Bathonian (Middle Jurassic) of the Russian Platform". Paleontological Journal. 58 (2): 160–170. doi:10.1134/S0031030123600294.
  3. Meister, C.; Schlögl, J.; Tomašovych, A.; Ippolitov, A.; Kogutich, S.; Stalennyi, O. (2024). "Systematics and biostratigraphy of ammonites across the Sinemurian/Pliensbachian boundary in the Ukrainian Carpathians (Pieniny Klippen Belt)". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 311 (1): 1–111. doi:10.1127/njgpa/2024/1185.
  4. Zakharov, Y. D.; Borisov, I. V.; Smyshlyaeva, O. P.; Bondarenko, L. G.; Popov, A. M. (2024). "Early Triassic Ammonoids of the Genus Churkites Okuneva, 1990: Phylogenetic Reconstructions and New Finds in South Primorye". Paleontological Journal. 58 (1): 28–43. doi:10.1134/S003103012401009X.
  5. Shigeta, Y.; Maeda, H. (2024). "A New Species of Tetragonites (Ammonoidea, Tetragonitidae) from the Maastrichtian of Southern Sakhalin, Russian Far East". Paleontological Research. 28 (4): 1–16. doi:10.2517/PR230022.
  6. Korn, D. (2024). "Late Devonian tornoceratid ammonoids from the Timan region, NW Russia". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 310 (3): 219–228. doi:10.1127/njgpa/2023/1178.
  7. Bhosale, S.; Pandey, D.; Alberti, M.; Fürsich, F.; Chaskar, K.; Thakkar, M. (2024). "Upper Jurassic (Oxfordian‒Tithonian) ammonites and biostratigraphy of the Spiti Shale Formation of the Spiti and Zanskar regions in the Indian Himalayas". Palaeontographica Abteilung A. 327 (4–6): 107–163. doi:10.1127/pala/2024/0145.
  8. Nishino, Y.; Komazaki, K.; Arai, M.; Hattori, A.; Uoya, Y.; Iida, T.; Wani, R. (2024). "Covariable changes of septal spacing and conch shape during early ontogeny: a common characteristic between Perisphinctina and Ancyloceratina (Ammonoidea, Cephalopoda)". Journal of Paleontology: 1–13. doi:10.1017/jpa.2023.96.
  9. Niko, S. (2024). "Silurian cephalopods from the Gionyama Formation in the Kuraoka area, Miyazaki Prefecture, Southwest Japan" (PDF). Bulletin of the Tohoku University Museum. 23: 1–10.
  10. Niko, S.; Ehiro, M. (2024). "Two Olenekian (Early Triassic) species of longiconic cephalopods from the Osawa Formation, Miyagi Prefecture, Northeast Japan" (PDF). Bulletin of the Tohoku University Museum. 23: 17–21.
  11. Serafini, G.; Danise, S.; Maxwell, E. E.; Martire, L.; Amalfitano, J.; Cobianchi, M.; Thun Hohenstein, U.; Giusberti, L. (2024). "Of his bones are crinoid made: taphonomy and deadfall ecology of marine reptiles from a pelagic setting (Middle-Upper Jurassic of northeastern Italy)". Rivista Italiana di Paleontologia e Stratigrafia. 130 (1): 97–128. doi:10.54103/2039-4942/22314.
  12. Guerrini, V. B.; Matos, S. A.; Fürsich, F. T.; Rodrigues, M. G.; Varejão, F. G.; Warren, L. V.; Assine, M. L.; Simões, M. G. (2024). "Early Cretaceous bivalves of the Romualdo Formation, Araripe Basin, Northwestern Brazil". Cretaceous Research. 105910. doi:10.1016/j.cretres.2024.105910.
  13. Ayoub-Hannaa, W. S.; Cooper, M. R.; Abdelhady, A. A.; Fürsich, F. T. (2024). "Jurassic Trigoniida (Bivalvia) from Gebel Maghara, northern Sinai, Egypt". Journal of Paleontology. 97 (6): 1206–1232. doi:10.1017/jpa.2023.79.
  14. Gil, J.; Pons, J. M.; Vicens, E.; García-Hidalgo, J.; Segura, M. (2024). "The Turonian-Campanian rudist bivalve succession in the Central Iberian Basin". Cretaceous Research. 157. 105815. Bibcode:2024CrRes.15705815G. doi:10.1016/j.cretres.2023.105815.
  15. Biakov, A. S. (2024). "A New Family and Genus of Late Permian Pectinids of the Boreal Superrealm (Pectinida: Voluceropectinidae: Voluceropecten)". Paleontological Journal. 58 (2): 151–159. doi:10.1134/S0031030123600257.
  16. Echevarría, J.; Ros-Franch, S. (2024). "Biogeographic response to major extinction events: The case of Triassic bivalves". Palaeogeography, Palaeoclimatology, Palaeoecology. 638. 112053. Bibcode:2024PPP...63812053E. doi:10.1016/j.palaeo.2024.112053.
  17. Mondanaro, A.; Dominici, S.; Danise, S. (2024). "Response of Mediterranean Sea bivalves to Pliocene–Pleistocene environmental changes". Palaeontology. 67 (2). e12696. doi:10.1111/pala.12696.
  18. Miquel, S. E. (2024). "New species and records of freshwater and land gastropods from the Cretaceous of Argentina". Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen. 310 (2): 119–131. doi:10.1127/njgpa/2023/1173.
  19. Harzhauser, M.; Landau, B. M. (2024). "The Colubrariidae, Eosiphonidae, Melongenidae, Pisaniidae, Prodotiidae and Tudiclidae (Gastropoda, Buccinoidea) of the Miocene Paratethys Sea". Zootaxa. 5427 (1): 1–110. doi:10.11646/zootaxa.5427.1.1.
  20. Vermeij, G. J. (2024). "Shell-based genus-level reclassification of the Family Vasidae (Mollusca: Neogastropoda)". Zootaxa. 5405 (4): 526–544. doi:10.11646/zootaxa.5405.4.3. PMID 38480172.
  21. Ryan, H. E.; Travouillon, K. J.; Milne, L. A.; Martin, S. K.; Thorn, K. M.; Whisson, C. S. (2024). "A new Bothriembryon from the Nullarbor Plain, Western Australia, with insights on the age of Bothriembryon praecursor from Kangaroo Well, Northern Territory". Alcheringa: An Australasian Journal of Palaeontology. doi:10.1080/03115518.2024.2323472.
  22. Schnetler, K. I.; Madsen, H.; Śliwińska, K. K.; Heilmann-Clausen, C.; Ulleberg, K. (2024). "A late Oligocene molluscan fauna and Oligocene coastal outcrops from Vilsund, NW Denmark". Bulletin of the Geological Society of Denmark. 73: 1–40. doi:10.37570/bgsd-2024-73-01.
  23. Talaván-Serna, J.; Talaván-Gómez, J. (2024). "Corrosella arlanzonica nov. sp. (Truncatelloidea: Hydrobiidae) from the Neogene of the Iberian Penisula". Malacologia Mostra Mondiale. 122: 17.
  24. Ferrari, M. (2024). "Early and Middle Jurassic marine gastropods from the Neuquén Basin, Argentina". Publicación Electrónica de la Asociación Paleontológica Argentina. 24 (1): 1–25. doi:10.5710/PEAPA.13.11.2023.472.
  25. Brunetti, M. M.; Della Bella, G. (2024). "Pseudotorinia pliomarthae, nuova specie del Pliocene del Bacino Mediterraneo (Gastropoda: Architectonicidae)". Bollettino Malacologico. 60 (1): 40–45. doi:10.53559/BollMalacol.2023.20.
  26. Anderson, B. M.; Allmon, W. D. (2023). "Phylogeny and Systematics of Fossil and Recent Vermicularia (Caenogastropoda: Turritellidae)". Malacologia. 66 (1–2): 1–59. doi:10.4002/040.066.0101.
  27. Wolkenstein, K.; Schmidt, B. C.; Harzhauser, M. (2024). "Detection of intact polyene pigments in Miocene gastropod shells". Palaeontology. 67 (1). e12691. Bibcode:2024Palgy..6712691W. doi:10.1111/pala.12691.
  28. Mazaev, A. V. (2024). "The Rostroconch Family Bransoniidae from the Early Permian Shakhtau Reef Massif (Mollusca, Southern Cis-Urals)". Paleontological Journal. 57 (1 supplement): S65–S82. doi:10.1134/S0031030123700028.
  29. Mazaev, A. V. (2024). "Taxonomical Diversity and Morphology of Rostroconch Shells of the Family Arceodomidae fam. nov. from the Early Permian Shakhtau Reef Massif (Mollusca; Southern Cis-Urals)". Paleontological Journal. 57 (10): 1104–1127. doi:10.1134/S0031030123100039.
  30. Antoine, P.-O.; Wieringa, L. N.; Adnet, S.; Aguilera, O.; Bodin, S. C.; Cairns, S.; Conejeros-Vargas, C. A.; Cornée, J.-J.; Ežerinskis, Ž.; Fietzke, J.; Gribenski, N. O.; Grouard, S.; Hendy, A.; Hoorn, C.; Joannes-Boyau, R.; Langer, M. R.; Luque, J.; Marivaux, L.; Moissette, P.; Nooren, K.; Quillévéré, F.; Šapolaitė, J.; Sciumbata, M.; Valla, P. G.; Witteveen, N. H.; Casanova, A.; Clavier, S.; Bidgrain, P.; Gallay, M.; Rhoné, M.; Heuret, A. (2024). "A Late Pleistocene coastal ecosystem in French Guiana was hyperdiverse relative to today". Proceedings of the National Academy of Sciences of the United States of America. 121 (14). e2311597121. doi:10.1073/pnas.2311597121. PMC 10998618. PMID 38527199.

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