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Gigantic scaphopods (Mollusca) from the Permian Akasaka Limestone, central Japan

Published online by Cambridge University Press:  10 March 2021

Kaito Asato
Affiliation:
Fukui Prefectural Dinosaur Museum, 51-11 Terao, Katsuyama, Fukui 911-8601, Japan
Tomoki Kase
Affiliation:
Department of Biological Sciences, Kanagawa University, 2946, Tsuchiya, Hiratsuka-shi, Kanagawa, 259-1293, Japan

Abstract

Paleozoic scaphopods are among the most poorly known mollusks because of their featureless tubular shell morphology and fragmentary preservation. An apical orifice at the posterior end of a conch is a diagnostic character of Scaphopoda that distinguishes them from other groups of animals that produce similar calcareous tubes, but this structure is rarely preserved. A rich molluscan fauna from the Permian Akasaka Limestone in central Japan includes scaphopod shells, and past studies have reported four species, all of which were based on fragmentary specimens. This study recognizes six species in the Akasaka Limestone mainly on the basis of museum/institution collections, and a new genus (Minodentalium) and three species (Prodentalium onoi, M. hayasakai, and M. okumurai) are described, two known species (P. akasakensis and P. neornatum) are redescribed in more detail, and one species (Prodentalium sp.) is described under open nomenclature. The following eight known species are allocated to the new genus Minodentalium: Plagioglypta furcata Waterhouse, 1980; Pl. girtyi Knight, 1940; Pl. subannulata Easton, 1962; Dentalium ingens De Koninck, 1843; D. meekianum Geinitz, 1866; Pl. prosseri Morningstar, 1922; Dentalium priscum Münster in Goldfuss, 1842; and D. herculeum De Koninck, 1863. All the species, except for M. hayasakai, are gigantic, reaching 200 mm or more in length. The species richness is the greatest known from a single locality/formation worldwide.

UUID: http://zoobank.org/35405b9d-3ba7-40bf-87c5-3f2b550b1a6d

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Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of The Paleontological Society

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References

Adams, H., and Adams, A., 1853–1854, The Genera of Recent Mollusca; Arranged According to Their Organization, Volume 1: London, J. Van Voorst, 484 p.Google Scholar
Alroy, J., 2020, Fossilworks: gateway to the paleobiology database. http://fossilworks.org/ [Sep. 2020]Google Scholar
Asato, K., Kase, T., Ono, T., Sashida, K., and Agematsu, S., 2016, Nipponomaria, a new pleurotomarioidean gastropod genus (Mollusca) from the Permian Akasaka Limestone, central Japan: Paleontological Research, v. 20, p. 385393.10.2517/2016PR023CrossRefGoogle Scholar
Asato, K., Kase, T., Ono, T., Sashida, K., and Agematsu, S., 2017, Morphology, systematics and paleoecology of Shikamaia, aberrant Permian bivalves (Alatoconchidae: Ambonychioidea) from Japan: Paleontological Research, v. 21, p. 358379.Google Scholar
Boissevain, M., 1906, The Scaphopoda of the Siboga Expedition, Treated Together with the Known Indo-Pacific Scaphopoda: Leyden, E.J. Brill, 76 p.Google Scholar
Cope, E.D., 1887, The Origin of the Fittest: New York, D. Appleton and Co., 467 p.Google Scholar
Cossmann, M., 1888, Catalogue illustré des coquilles fossils de l'Éocène des environs de Paris: Annales de la Société royale malacologique de Belgique, v. 23, p. 1324.Google Scholar
Da Costa, E.M., 1778, Historia Naturalis Testaceorum Britanniae or The British Conchology; Containing the Description and Other Particulars of Natural History of the Shells of Great Britain and Ireland: London, Millan, White, Elmsley & Robson.Google Scholar
De Koninck, L.G., 1843, Descriptions des animaux fossiles, qui se trouvent dans le terrain carbonifère de Belgique: Liège, Imprimerie H. Dessain, 650 p.Google Scholar
De Koninck, L.G., 1863, Descriptions of some Fossils from India, discovered by Dr. A. Fleming, of Edinburgh: The Quarterly Journal of the Geological Society of London, v. 19, p. 119.10.1144/GSL.JGS.1863.019.01-02.05CrossRefGoogle Scholar
De Koninck, L.G., 1883, Faune du Calcaire Carbonifère de la Belgique. Deuxième partie. Genres: Gyroceras, Cyrtoceras, Gomphoseras, Orthoceras, Subclymenia et Goniatites: Annales du Musée royal d'Histoire naturelle de Belgique, série paléontologique, 5, 133 p.Google Scholar
Dinamani, P., 1964a, Burrowing behavior of Dentalium: Biological Bulletin, v. 126, p. 2832.10.2307/1539414CrossRefGoogle Scholar
Dinamani, P., 1964b, Feeding in Dentalium conspicuum: Proceedings of the Malacological Society of London, v. 36, p. 15.Google Scholar
Easton, W.H., 1962, Carboniferous Formations and Faunas of Central Montana: Geological Survey Professional Paper 348, 126 p.Google Scholar
Emerson, W.K., 1962, A classification of the scaphopod molluscs: Journal of Paleontology, v. 36, p. 461482.Google Scholar
Enderle, J., 1900, Über eine anthracolithische Fauna von Balia Maaden in Kleinasian: Beiträge zur Paläontologie und Geologie Österreich-Ungarns und des Orients, v. 13, p. 49109.Google Scholar
Engeser, T., and Riedel, R., 1992, Scaphopods from middle Liassic erratic boulders of northern Germany; with a review on Liassic Scaphopoda: Scripta Geologica, v. 99, p. 3556.Google Scholar
Engeser, T., and Riedel, R., 1996, The evolution of the Scaphopoda and its implications for the systematics of the Rostroconchia (Mollusca): Mitteilungen Geologische-Paläontologische Institut der Universität Hamburg, v. 79, p. 117138.Google Scholar
Geinitz, H.B., 1866, Carbonformation und Dyas in Nebraska: Dresden, E. Blochmann, 91 p.Google Scholar
Gentile, R.J., 1974, A new species of Dentalium from the Pennsylvanian of eastern Kansas: Journal of Paleontology, v. 48, p. 12131216.Google Scholar
Glover, E.A., Taylor, J.D., and Whittaker, J., 2003, Distribution, abundance and foraminiferal diet of an intertidal scaphopod, Laevidentalium lubricatum, around the Burrup Peninsula, Dampier, Western Australia, in Wells, F.E., Walker, D.I., and Jones, D.S., eds., The Marine Flora and Fauna of Dampier, Western Australia: Perth, Western Australian Museum, p. 225240.Google Scholar
Godefroid, J., Mottequin, B., and Yochelson, E.L., 2006, Restudy of the lower Carboniferous Scaphopoda described by De Koninck (1843, 1883): Bulletin de l'Institut royal des Sciences naturelles de Belgique, Sciences de la Terre, v. 76, p. 137163.Google Scholar
Goldfuss, A., 1841–1844, Petrefacta Germaniae et ea quae in Museo Universitatis Regiae Borussicae Fridericiae Wilhelmiae Rhenanae: Dritter Theil: Düsseldorf, Arnz & Company, 128 p.Google Scholar
Gray, J.E., 1847, A list of the genera of the Recent Mollusca, their synonyms and types: Proceedings of the Zoological Society of London, v. 15, p. 129219.Google Scholar
Gudmundsson, G., Engelstad, K., Steiner, G., and Svavarsson, J., 2003, Diets of four deep-water scaphopod species (Mollusca) in the North Atlantic and Nordic Seas: Marine Biology, v. 142, p. 11031112.10.1007/s00227-003-1046-3CrossRefGoogle Scholar
Hayasaka, I., 1925, On some Paleozoic molluscs of Japan. I: Lamellibranchiata and Scaphopoda: Science Reports of the Tohoku Imperial University, Second Series (Geology), v. 8, p. 126.Google Scholar
Hayasaka, I., 1938, Two species of Trachydomia from Japan: Memoirs of the Faculty of Science and Agriculture, Taihoku Imperial University, v. 22, p. 18.Google Scholar
Hayasaka, I., 1939, Spiromphalus, a new gastropod genus from the Permian of Japan: Memoirs of the Faculty of Science and Agriculture, Taihoku Imperial University, v. 22, p. 1923.Google Scholar
Hayasaka, I., 1943, On some Permian gastropods from Kinsyozan, Akasaka-machi, Gifu Prefecture: Memoirs of the Faculty of Science, Taihoku Imperial University, ser. 3, v. 1, p. 2346.Google Scholar
Hayasaka, I., and Hayasaka, S., 1953, Fossil assemblages of molluscs and brachiopods of unusually large sizes from the Permian of Japan: Transactions and Proceedings of the Palaeontological Society of Japan, New Series, no. 10, p. 3744.Google Scholar
Isozaki, Y, 1997, Jurassic accretion tectonics of Japan: The Island Arc, v. 6, p. 2551.CrossRefGoogle Scholar
Isozaki, Y., and Kase, T., 2014, The occurrence of the large gastropod “Pleurotomariayokoyamai Hayasaka from the Capitanian (Permian) Iwaizaki Limestone in Northwest Japan: Paleontological Research, v. 18, p. 250257.CrossRefGoogle Scholar
Isozaki, Y., and Ota, A., 2001, Middle-upper Permian (Maokouan-Wuchiapingian) boundary in mid-oceanic paleo-atoll limestone in Kamura and Akasaka, Japan: Proceedings of the Japan Academy, Series B, v. 77B, p. 104109.CrossRefGoogle Scholar
Kani, T., Hisanabe, C., and Isozaki, Y., 2013, The Capitanian (Permian) minimum of 87Sr/86Sr ratio in the mid-Panthalassan paleo-atoll carbonates and its demise by the deglaciation and continental doming: Gondwana Research, v. 24, p. 212221.CrossRefGoogle Scholar
Kase, T., Kurihara, Y., Aguilar, Y.M., Pandita, H., Fernando, A.G.S., and Hayashi, H., 2015, A new cerithioidean genus Megistocerithium (Gastropoda; Mollusca) from the Miocene of Southeast Asia: a possible relict of Mesozoic “Eustomatidae”: Paleontological Research, v. 19, p. 299311.CrossRefGoogle Scholar
Kasuya, A., Isozaki, Y., and Igo, H., 2012, Constraining paleo-latitude of a biogeographic boundary in mid-Panthalassa: fusuline province shift on the Late Guadalupian (Permian) migrating seamount: Gondwana Research, v. 21, p. 611623.CrossRefGoogle Scholar
Klug, C., De Baets, K., Kröger, B., Bell, M.A., Korn, D., and Payne, J.L., 2015, Normal giants? Temporal and latitudinal shifts of Palaeozoic marine invertebrate gigantism and global change: Lethaia, v. 48, p. 267288.CrossRefGoogle Scholar
Knight, J.B., 1940, Gastropods of the Whitehorse Sandstone, in Newell, N.D., Invertebrate fauna of the late Permian Whitehorse Sandstone: Bulletin of the Geological Society of America, v. 51, p. 302334.Google Scholar
Kobayashi, F., 2011, Permian fusuline faunas and biostratigraphy of the Akasaka Limestone (Japan): Revue de Paléobiologie, v. 30, p. 431574.Google Scholar
Kues, B.S., Mapes, R.H., and Yochelson, E.L., 2006, Nautiloid-scaphopod homeomorphy in the late Palaeozoic of the United States: Lethaia, v. 39, p. 9193.CrossRefGoogle Scholar
Lamprell, K.L., and Healy, J.M., 1998, A Revision of the Scaphopoda from Australian Waters (Mollusca): Records of the Australian Museum, supplement 24, 189 p.CrossRefGoogle Scholar
Langer, M.R., Lipps, J.H., and Guillermo, M., 1995, Predation on foraminifera by the dentaliid deep-sea scaphopod Fissidentalium megathyris: Deep-Sea Research, Part I: Oceanographic Research Papers, v. 42, p. 849857.CrossRefGoogle Scholar
Linnaeus, C., 1758, Systema Naturae per Regna tria naturae secundum classes, ordines, genera, species, cum characteristibus, differentiis, synonymis, locis (tenth edition), Volume 1: Holmiae, Laurentii salvii, 826 p.Google Scholar
Ludbrook, N.H., 1960, Scaphopoda, in Moore, R.C., ed., Treatise on Invertebrate Paleontology, Part I, Mollusca 1: Boulder, Colorado, and Lawrence, Kansas, Geological Society of America and University of Kansas Press, p. I37I41.Google Scholar
Makiguchi, T., 1995, Scaphopoda, in Hachiya, K., ed., The Illustrated Collections of Asami Fossil Museum, Fossils of Kinsyozan: Gifu, Japan, Asami Fossil Museum, p. 170181. [in Japanese]Google Scholar
Makiyama, J., 1931, Stratigraphy of the Kakegawa Pliocene in Totomi: Memoirs of the College of Science, Kyoto Imperial University, ser. B, v. 7, p. 153.Google Scholar
Miller, A.K., 1949, A giant scaphopod from the Pennsylvanian of Texas: Journal of Paleontology, v. 23, p. 387391.Google Scholar
Morningstar, H., 1922, Pottsville Fauna of Ohio: Columbus, Geological Survey of Ohio, Fourth Series, Bulletin 25, 312 p.CrossRefGoogle Scholar
Münster, G., 1841, Beschreibung und Abbildung der in den Kalkmergelschichten von St. Cassian gefunden Versteinerungen, in Wissmann, H.L., Münster, G., and Braun, K.F., eds., Beiträge zur Geognosie und Petrefacten-Kunde des südöstlichen Tirols vorzüglich der Schichten von St. Cassian, Heft 4: Bayreuth, Buchner, p. 25152.Google Scholar
Nakazawa, K., 2007, Minute bivalve fossils from the Permian Akasaka Limestone, central Japan (appendix) description of a new species of Pernopecten: Earth Science (Chikyu Kagaku), v. 61, p. 187201. [in Japanese with English abstract and description]Google Scholar
Nishiwaki, N., Takagi, Y., Hashimoto, H., Setta, T., and Ono, T., 2011, Geological and paleontological study of the Permian Akasaka Limestone. Part 1. Stratigraphy and geological structure of the uppermost member in the Ichihashi District: Bulletin of Research Institute of Nara University, no. 19, p. 3343. [in Japanese]Google Scholar
Nishiwaki, N., Takagi, Y., Hashimoto, H., Setta, T., and Ono, T., 2013, Geological and paleontological study of the Permian Akasaka Limestone. Part 2. The uppermost member in the Ichihashi and Iwahara Districts: Bulletin of Research Institute of Nara University, no. 21, p. 3753. [in Japanese with English abstract]Google Scholar
Nishiwaki, N., Takagi, Y., Hashimoto, H., Setta, T., and Ono, T., 2014, Geological and paleontological study of the Permian Akasaka Limestone. Part 3. Stratigraphy and biostratigraphy of the uppermost member: Bulletin of Research Institute of Nara University, no. 22, p. 7394. [in Japanese]Google Scholar
Nützel, A., and Kaim, A., 2014, Diversity, palaeoecology and systematics of a marine fossil assemblage from the Late Triassic Cassian Formation at Settsass Scharte, N Italy: Paläontologische Zeitschrift, v. 88, p. 405431.CrossRefGoogle Scholar
Nützel, A., and Nakazawa, K., 2012, Permian (Capitanian) gastropods from the Akasaka Limestone (Gifu Prefecture, Japan): Journal of Systematic Palaeontology, v. 10, p. 103169.CrossRefGoogle Scholar
Nützel, A., and Schulbert, C., 2005, Facies of two important Early Triassic gastropod lagerstätten: implications for diversity patterns in the aftermath of the end-Permian mass extinction: Facies, v. 51, p. 480500.CrossRefGoogle Scholar
Ota, A., and Isozaki, Y., 2006, Fusuline biotic turnover across the Guadalupian–Lopingian (middle–upper Permian) boundary in mid-oceanic carbonate buildups: biostratigraphy of accreted limestone in Japan: Journal of Asian Earth Sciences, v. 26, p. 353368.CrossRefGoogle Scholar
Ozawa, T., and Nishiwaki, N., 1992, Permian Tethyan biota and sedimentary facies of the Akasaka Limestone Group: Field Trip Guidebook of 29th International Geological Congress, v. B13, p. 189195.Google Scholar
Ozawa, Y., 1927, Stratigraphical studies of the Fusulina limestone of Akasaka, Province of Mino: Journal of Faculty of Science, Imperial University of Tokyo, Section 2, v. 2, p. 121164.Google Scholar
Palmer, C.P., 1975, A new Jurassic scaphopod from the Oxford clay of Buckinghamshire: Palaeontology, v. 18, p. 377383.Google Scholar
Peel, J.S., 2004, Pinnocaris and the origin of scaphopods: Acta Palaeontologica Polonica, v. 49, p. 534550.Google Scholar
Peel, J.S., 2006, Scaphopodization in Palaeozoic molluscs: Palaeontology, v. 49, p. 13571364.CrossRefGoogle Scholar
Peel, J.S., and Yochelson, E.L., 1984, Permian Toxeumorphorida from Greenland: an appraisal of the molluscan class Xenoconchia: Lethaia, v. 17, p. 211221.Google Scholar
Pilsbry, H.A., and Sharp, B., 1897–1898, Tryon's Manual of Conchology; Scaphopoda, Volume 17: Philadelphia, Conchological Section, Academy of Natural Sciences, 280 p. (p. 1144, 1897; p. 145–280, 1898).Google Scholar
Plate, L.H., 1908, Die Solenoconchen der Valdivia-Expedition: Deutsche Tiefsee-Expedition 1898–1899, v. 9, p. 339361.Google Scholar
Pojeta, J. Jr., and Runnegar, B., 1979, Rhytiodentalium kentuckyensis, a new genus and new species of Ordovician scaphopod and the early history of scaphopod mollusks: Journal of Paleontology, v. 53, p. 530541.Google Scholar
Reynolds, P.D., and Steiner, G., 2008, Scaphopoda, in Ponder, W.F., and Lindberg, D.R., eds., Phylogeny and Evolution of the Mollusca: Berkeley, University of California Press, p. 143161.Google Scholar
Scarabino, V., 1995, Scaphopoda of the tropical Pacific and Indian Oceans, with description of 3 new genera and 42 new species, in Bouchet, P., ed., Résultats des Campagnes Musorstom, Volume 14: Paris, Mémoires du Muséum National d'Histoire Naturelle, p. 189379.Google Scholar
Shimansky, V.N., 1974, A new scaphopod genus from the Carboniferous of the Donbass: Paleontologicheskiy Zhurnal, v. 8, p. 125127. [in Russian]Google Scholar
Shimek, R.L., 1988, The functional morphology of scaphopod captacula: The Veliger, v. 30, p. 213221.Google Scholar
Shimek, R.L., 1990, Diet and habitat utilization in a north-eastern Pacific Ocean scaphopod assemblage: American Malacological Bulletin, v. 7, p. 147169.Google Scholar
Steiner, G., 1994, Variations in the number of intestinal loops in Scaphopoda Mollusca: Marine Ecology, v. 15, p. 165174.CrossRefGoogle Scholar
Stiller, F., 2001, Scaphopods from the upper Anisian (Middle Triassic) of Qingyan, south-western China: Neues Jahrbuch für Geologie und Paläontologie, Monatshefte, v. 86, p. 617632.CrossRefGoogle Scholar
Tenery, J.H., and Rowett, C.L., 1979, New specimens of Prodentalium raymondi Young (Scaphopoda) from the Pennsylvanian of Texas: Journal of Paleontology, v. 53, p. 164168.Google Scholar
Waagen, W., 1890, Salt-Range fossils. I. Productus-Limestone fossils. 2. Pisces-Cephalopoda: Supplement. Gasteropoda: Memoirs of the Geological Survey of India, Palaeontologia Indica, v. 1, p. 73183.Google Scholar
Wakimizu, T., 1902, Limestone beds of Kinshozan, Akasaka, Mino Province, Japan: Journal of the Geological Society of Tokyo, v. 9, p. 7175, 163–169, 205–212, 331–339. [in Japanese]Google Scholar
Waterhouse, J.B., 1980, Scaphopod, gastropod and rostroconch species from the Permian of New Zealand: Journal of the Royal Society of New Zealand, v. 10, p. 195214.CrossRefGoogle Scholar
White, C.A., 1874, Preliminary Report upon Invertebrate Fossils Collected by the Expeditions of 1871, 1872, and 1873, with Descriptions of New species: Washington, D.C., Government Printing Office, 27 p.Google Scholar
Yancey, T.E., 1973, Apical characters of Prodentalium from the Permian of Malaysia: Malaysian Journal of Science, v. 2, p. 145148.Google Scholar
Yancey, T.E., 1978, Brachiopods and molluscs of the lower Permian Arcturus Group, Nevada and Utah. Part 1: brachiopods, scaphopods, rostroconchs, and bivalves: Bulletins of American Paleontology, v. 74, p. 257367.Google Scholar
Yochelson, E.L., 2004, The record of the early “Scaphopoda” (?Mollusca) reevaluated: Annalen des Naturhistorischen Museums in Wien, ser. A, v. 106, p. 1331.Google Scholar
Yochelson, E.L., 2011, Carboniferous Scaphopoda (Mollusca) and non-scaphopods from Scotland: Scottish Journal of Geology, v. 47, p. 6779.CrossRefGoogle Scholar
Yoo, E.K., 1988, Early Carboniferous Mollusca from Gundy, Upper Hunter, New South Wales: Records of the Australian Museum, v. 40, p. 233264.CrossRefGoogle Scholar
Young, J.A. Jr., 1942, Pennsylvanian Scaphopoda and Cephalopoda from New Mexico: Journal of Paleontology, v. 16, p. 120125.Google Scholar
Win, Zaw, 1999, Fusuline biostratigraphy and paleontology of the Akasaka Limestone, Gifu Prefecture, Japan: Bulletin of Kitakyushu Museum of Natural History 18, 76 p.Google Scholar