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Type: Articles
Published: 2010-03-05
Page range: 26–48
Abstract views: 50
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New and little known mollusks from ancient chemosynthetic environments

Institut für Geowissenschaften, Christian-Albrechts-Universität, Ludewig-Meyn-Str. 10, 24118 Kiel, Germany
School of Geography, Geology and Environmental Science, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand Department of Invertebrate Zoology and Geology, California Academy of Sciences, Golden Gate Park, San Francisco, California 94118, USA
Université de Lyon, Lyon 1, UMR CNRS 5125 Paléoenvironnements et Paléobiosphère, 2 rue Raphaël Dubois, 69622 Villeurbanne Cedex, France
Mollusca Cold seeps deep-sea Gastropoda Bivalvia Late Jurassic Early Cretaceous Oligocene

Abstract

Twelve mollusk species from late Jurassic to Oligocene cold seep deposits are described and illustrated. Nine of them are new, two have already been named, two new genera are introduced, and one species is described only in open nomenclature. Puncturella (sensu lato) mcleani sp. nov. and Fissurella (sensu lato) bipunctata Stanton, 1895 are the only confirmed fissurellids in fossil cold seeps. The sutilizonid Triassurella goederti sp. nov. is similar to the modern ventinhabiting Sutilizona and the Late Triassic shallow-water reef-inhabitant Triassurella carnica. A smooth, late Jurassic neritid is the oldest neritid from fossil seeps and probably represents an independent neritid radiation into the seep environment, without close phylogenetic connection to the modern Bathynerita. The four new abyssochrysoid caenogastropods Humptulipsia macsotayi, Hokkaidoconcha novacula, Paskentana anistratenkorum, and P. umbilicata significantly extend the stratigraphic and geographic ranges of these apparently seep-restricted genera. Four bivalves are described, including the new modiomorphid Caspiconcha rubani from the early Cretaceous and the new bathymodioline Bathymodiolus (s.l.) palmarensis from the Oligocene. Among the lucinids, the oldest seep-inhabiting lucinid (late Jurassic) is described as Beauvoisina carinata gen. et sp. nov.; the new genus Cubatea is introduced for an Oligocene lucinid from Cuba. It is suggested that Caspiconcha, Paskentana, and hokkaidoconchids constitute the core of a seeprestricted fauna that inhabited seeps worldwide from (at least) late Jurassic to early Cretaceous time. These taxa are, at the family level, phylogenetically unrelated to the modern vent and seep fauna.

References

  1. Amano K. & Kiel S. (2007) Fossil vesicomyid bivalves from the North Pacific region. The Veliger, 49, 270–293.

    Ascher E. (1906) Die Gastropoden, Bivalven und Brachiopoden der Grodischter Schichten. Beiträge zur Paläontologie und Geologie Österreich-Ungarns und des Orients, 19, 135–172.

    Bandel K. (2007) Description and classification of Late Triassic Neritimorpha (Gastropoda, Mollusca) from the St Cassian Formation, Italian Alps. Bulletin of Geosciences, 82, 215–274.

    Bandel K. & Kiel S. (2003) Relationships of Cretaceous Neritimorpha (Gastropoda, Mollusca), with the description of seven new species. Bulletin of the Czech Geological Survey, 78, 53–65.

    Beck L.A. (1996) Morphology and anatomy of new species of neolepetopsid, acmaeid, fissurellid and pyropeltid limpets from Edison Seamount off Lihir Islands (West Pacific). Archiv für Molluskenkunde, 125, 87–103.

    Birgel D., Thiel V., Hinrichs K.-U., Elvert M. et al. (2006) Lipid biomarker patterns of methane-seep microbialites from the Mesozoic convergent margin of California. Organic Geochemistry, 37, 1289–1302.

    Bouchet P. & Cosel R.v. (2004) The world's largest lucinid is an undescribed species from Taiwan (Mollusca: Bivalvia). Zoological Studies, 43, 704–711.

    Bouhamdi A., Gaillard C., Ruget C. & Bonnet L. (2000) Foraminières benthiques de l'Oxfordien moyen de la plate-forme au bassin dans le Sud-Est de la France. Répartition et contrôle environnemental. Eclogae Geologicae Helvetiae, 93, 315–330.

    Bretsky S.S. (1976) Evolution and classification of the Lucinidae (Mollusca; Bivalvia). Palaeontographica Americana, 8, 219–337.

    Bruguière J.G. (1789) Encyclopédie méthodique. Histoire naturelle de vers. Panckoucke, Paris, 345–758.

    Buvignier A. (1843) Sur quelques fossiles nouveaux des départements de la Meuse et des Ardennes. Mémoir de la Société Philomatique de Verdun, 225–252.

    Campbell K.A. (2006) Hydrocarbon seep and hydrothermal vent paleoenvironments and paleontology: Past developments and future research directions. Palaeogeography, Palaeoclimatology, Palaeoecology, 232, 362–407.

    Campbell K.A. & Bottjer D.J. (1995) Brachiopods and chemosymbiotic bivalves in Phanerozoic hydrothermal vent and cold seep environments. Geology, 23, 321–324.

    Campbell K.A., Carlson C. & Bottjer D.J. (1993) Fossil cold seep limestones and associated chemosymbiotic macroinvertebrate faunas, Jurassic-Cretaceous Great Valley Group, California. In: Graham SA, Lowe DR (Eds), Advances in the Sedimentary Geology of the Great Valley Group, Sacramento Valley, California. Pacific Section of the Society of economic Paleontologists and Mineralogists, Los Angeles, 37–50.

    Campbell, K.A., Farmer, J.D., and Des Marais, D. (2002) Ancient hydrocarbon seeps from the Mesozoic convergent margin of California: Carbonate geochemistry, fluids and paleoenvironments. Geofluids, 2, 63–94.

    Campbell K.A., Peterson D. & Alfaro A.C. (2008) Two new species of Retiskenea? (Gastropoda: Neomphalidae) from Lower Cretaceous hydrocarbon seep-carbonates of northern California. Journal of Paleontology, 82, 140–153.

    Chavan A. (1969) Superfamily Lucinacea Fleming, 1828. In: Moore RC (Ed), Treatise on Invertebrate Paleontology Part N, Volume 2 Mollusca 6, Bivalvia. The Geological Society of America and The University of Kansas, Lawrence, N491–N518.

    Clarke A.H. (1989) New mollusks from undersea oil seep sites off Louisiana. Malacology Data Net, 2, 122–134.

    Cosel R.v. & Bouchet P. (2008) Tropical deep-water lucinids (Mollusca: Bivalvia) from the Indo-Pacific: essentially unknown, but diverse and occasionally gigantic. Tropical Deep-Sea Benthos, volume 25. Mémoires du Muséum National d'Histoire Naturelle, 196, 115–213.

    Cosel R.v., Comtet T. & Krylova E.M. (1999) Bathymodiolus (Bivalvia: Mytilidae) from hydrothermal vents on the Azores Triple Junction and the Logatchev hydrothermal field, Mid-Atlantic Ridge. The Veliger, 42, 218–248.

    Cosel R.v. & Janssen R. (2008) Bathymodioline mussels of the Bathymodiolus (s. l.) childressi clade from methane seeps near Edison Seamount, New Ireland, Papua New Guinea (Bivalvia: Mytilidae). Archiv für Molluskenkunde, 137, 195–224.

    Cossmann M. (1925) Essais de Paléoconchologie Comparée, 13. Press Universitaries de France, Paris, 345.

    Dall W.H. (1901) Synopsis of the Lucinacea and of the American species. Proceedings of the US National Museum of Natural History, 23, 779–833.

    Desbruyères D., Segonzac M. & Bright M. (2006) Handbook of deep-sea hydrothermal vent fauna. Second completely revised version. Denisia, 18, 1–544.

    d'Orbigny A. (1842–43) Paléontologie Française, terrains crétacés. Vol. 2, Gastéropodes. Privately published, Paris, 645.

    d'Orbigny A. (1850–60) Paléontologie française, terraines jurassiques 2. Privately published, Paris, 621.

    Gabb W.M. (1869) Cretaceous and Tertiary fossils: Palaeontology, v. II. Geological Survey of California, 1–299.

    Gaillard C., Bourseau J.-P., Boudeulle M., Pailleret P. et al. (1985) Les pleudo-biohermes de Beauvoisin (Drôme): un site hydrothermal sur lar marge téthysienne a l'Oxfordien? Bulletin de la Société Géologique de France, 8, 69–78.

    Gaillard C., Emmanuel L., Hanzo M., Lathuliere B. et al. (2004) Une séquence disséquée du bassin à la plate-forme: l'épisode carbonaté de l'Oxfordien moyen dans le Sud-Est de la France. Bulletin de la Société Géologique de France, 175, 107–119.

    Gaillard C., Rio M. & Rolin Y. (1992) Fossil chemosynthetic communities related to vents or seeps in sedimentary basins: the pseudobioherms of southeastern France compared to other world examples. Palaios, 7, 451–465.

    García E.F. (2002) Unexpected molluscan finds from the hydrocarbon vents off the Louisiana coast. American Conchologist, 30, 28.

    Gill F.L., Harding I.C., Little C.T.S. & Todd J.A. (2005) Palaeogene and Neogene cold seep communities in Barbados, Trinidad and Venezuela: An overview. Palaeogeography, Palaeoclimatology, Palaeoecology, 227, 191–209.

    Goedert J.L. & Kaler K.L. (1996) A new species of Abyssochrysos (Gastropoda: Loxonematoidea) from a Middle Eocene cold-seep carbonate in the Humptulips Formation, western Washington. The Veliger, 39, 65–70.

    Goedert J.L. & Squires R.L. (1990) Eocene deep-sea communities in localized limestones formed by subduction-related methane seeps, southwestern Washington. Geology, 18, 1182–1185.

    Griffin M. & Pastorino G. (2006) Madrynomya bruneti n. gen. and sp. (Bivalvia: ?Modiomorphoidae): a Mesozoic survivor in the Tertiary of Patagonia? Journal of Paleontology, 80, 272-282.

    Gustafson R.G., Turner R.D., Lutz R.A. & Vrijenhoek R.C. (1998) A new genus and five new species of mussels (Bivalvia: Mytilidae) from deep-sea sulfide/hydrocarbon seeps in the Gulf of Mexico. Malacologia, 40, 63–112.

    Hashimoto J. & Okutani T. (1994) Four new mytilid mussels associated with deepsea chemysynthetic communitites around Japan. Venus, 53, 61–83.

    Hickman C.S. (1994) The genus Parvilucina in the eastern Pacific: making evolutionary sense of a chemosymbiotic species complex. The Veliger, 37, 43–61.

    Hikida Y., Suzuki S., Togo Y. & Ijiri A. (2003) An exceptionally well-preserved seep community from the Cretaceous Yezo forearc basin in Hokkaido, northern Japan. Paleontological Research, 7, 329–342.

    Iwasaki H., Kyuno A., Shintaku M., Fujita Y. et al. (2006) Evolutionary relationships of deep-sea mussels inferred by mitochondrial DNA sequences. Marine Biology, 149, 1111–1122.

    Jones W.J. & Vrijenhoek R.C. (2006) Evolutionary relationships within the "Bathymodiolus" childressi group. Cahiers de Biologie Marine, 47, 403–407.

    Jones W.J., Won Y.-J., Maas P.A.Y., Smith P.J. et al. (2006) Evolution of habitat use by deep-sea mussels. Marine Biology, 148, 841–851.

    Kaim A., Jenkins R.G. & Hikida Y. (2009) Gastropods from Late Cretaceous hydrocarbon seep deposits in Omagari and Yasukawa, Nakagawa area, Hokkaido, Japan. Acta Palaeontologica Polonica, 54, 463–690.

    Kaim A., Jenkins R.G. & Warén A. (2008a) Provannid and provannid-like gastropods from Late Cretaceous cold seeps of Hokkaido (Japan) and the fossil record of the Provannidae (Gastropoda: Abyssochrysoidea). Zoological Journal of the Linnean Society, 154, 421–436.

    Kaim A. & Kelly S.R.A. (2009) Mass occurrence of hokkaidoconchid gastropods in the Upper Jurassic methane seep carbonate from Alexander Island, Antarctica. Antarctic Science, 21, 279–284.

    Kaim A., Kobayashi Y., Echizenya H., Jenkins R.G. et al. (2008b) Chemosynthesis-based associations on Cretaceous plesiosaurid carcasses. Acta Palaeontologica Polonica, 53, 97–104.

    Kanie Y. & Nishida T. (2000) New species of chemosynthetic bivalves, Vesicomya and Acharax, from the Cretaceous deposits of northwestern Hokkaido. Science Report of the Yokosuka City Museum, 47, 79–84.

    Kano Y., Chiba S. & Kase T. (2002) Major adaptive radiation in neritopsine gastropods estimated from 28S rRNA sequences and fossil records. Proceedings of the Royal Society B, 269, 2457–2465.

    Kelly S.R.A., Blanc E., Price S.P. & Withham A.G. (2000) Early Cretaceous giant bivalves from seep-related limestone mounds, Wollaston Forland, Northeast Greenland. In: Harper EM, Taylor JD, Crame JA (Eds), The evolutionary biology of the Bivalvia. Geological Society of London, Special Publication, London, 227–246.

    Kenk V.C. & Wilson B.R. (1985) A new mussel (Bivalvia: Mytilidae) from hydrothermal vents in the Galapagos Rift Zone. Malacologia, 26, 253–271.

    Kiel S. (2006) New records and species of mollusks from Tertiary cold-seep carbonates in Washington State, USA. Journal of Paleontology, 80, 121–137.

    Kiel S. (2008) Parasitic polychaetes in the Early Cretaceous hydrocarbon seep-restricted brachiopod Peregrinella multicarinata. Journal of Paleontology, 82, 1214–1216.

    Kiel S., Amano K., Hikida Y. & Jenkins R.G. (2009) Wood-fall associations from Late Cretaceous deep-water sediments of Hokkaido, Japan. Lethaia, 42, 74–82.

    Kiel S., Campbell K.A., Elder W.P. & Little C.T.S. (2008) Jurassic and Cretaceous gastropods from hydrocarbon-seeps in forearc basin and accretionary prism settings, California. Acta Palaeontologica Polonica, 53, 679–703.

    Kiel S. & Little C.T.S. (2006) Cold seep mollusks are older than the general marine mollusk fauna. Science, 313, 1429–1431.

    Kiel S. & Peckmann J. (2007) Chemosymbiotic bivalves and stable carbon isotopes indicate hydrocarbon seepage at four unusual Cenozoic fossil localities. Lethaia, 40, 345–357.

    Kiel S. & Peckmann J. (2008) Paleoecology and evolutionary significance of an Early Cretaceous Peregrinella-dominated hydrocarbon-seep deposit on the Crimean Peninsula. Palaios, 23, 751–759.

    Kojima S., Fujikura K. & Okutani T. (2004) Multiple trans-Pacific migrations of deep-sea vent/seep-endemic bivalves in the family Vesicomyidae. Molecular Phylogenetics and Evolution, 32, 396–406.

    Kollmann H.A. (2005) Révision critique de la Paléontologie Française d´Alcide d´Orbigny, vol. 3. Gastropodes Crétacés. Backhuys Publishers, Leiden, 239.

    Lamarck J.B. (1819) Histoire naturelle des animaux sans vertèbres... 3 éd. Verdière, Detervielle & the author, Paris,

    Lemoine M., Arnaud-Vanneau A., Arnaud H., Létolle R. et al. (1982) Indices possibles de paléo-hydrothermalisme marin dans le Jurassique et le Crétacé des Alpes occidentales (océan téthysien et sa marge continentale européenne): essai d'inventaire. Bulletin de la Société Géologique de France, 24, 641–647.

    Linnaeus C.v. (1758) Systema Naturae (tenth edition). Laurrentii Salvii, Holmiae, 824.

    Lorion J., Duperron S., Gros O., Cruaud C. et al. (2008) Several deep-sea mussels and their associated symbionts are able to live both on wood and on whale falls. Proceedings of the Royal Society B, 276, 177–185.

    Lowe R.T. (1827) On Balanus punctatus, Puncturella flemingii, together with some corrections relative to Turbo carenus, and some of the Chiton before described. Zoological Journal, 3, 76–80.

    Macsotay O. (1980) Molluscques benthiques du Crétacé inférieur. Une méthode de corrélation entre la Téthys mésogéenne et le domaine paléocaraïbe (Vénézuela). PhD Thesis, Université Claude-Bernard, Lyon.

    Majima R., Nobuhara T. & Kitazaki T. (2005) Review of fossil chemosynthetic assemblages in Japan. Palaeogeography, Palaeoclimatology, Palaeoecology, 227, 86–123.

    Marwick J. (1948) Lower Pliocene Mollusca from Otahuhu, Auckland. New Zealand Geological Survey Palaeontological Bulletin, 16, 1–38.

    McLean J.H. (1989) New slit-limpets (Scissurellacea and Fissurellacea) from hydrothermal vents. Part 1. Systematic descriptions and comparisons based on shell and radular characters. Contributions in Science, Natural History Museum of Los Angeles County, 407, 1–29.

    McLean J.H. & Geiger D.L. (1998) New genera and species having the Fissurisepta shell form, with a generic-level phylogenetic analysis (Gastropoda: Fissurellidae). Contributions in Science, Natural History Museum of Los Angeles County, 475, 1–32.

    Meek F.B. (1876) A report on the invertebrate Cretaceous and Tertiary fossils of the Upper Missouri Country. US Geological Survey of the Territories, Annual Report, 9, 1–629.

    Miyazaki J.-I., Shintaku M., Kyuno A., Fujiwara Y. et al. (2004) Phylogenetic relationships of deep-sea mussels of the genus Bathymodiolus (Bivalvia: Mytilidae). Marine Biology, 144, 527–535.

    Moore R.C. & Teichert C. (1969) Treatise on Invertebrate Paleontology, Volume N, Mollusca 6. Geological Society of America and University of Kansas Press, Kansas, 951.

    Moroni M.A. (1966) Malacofauna del "Calcare a Lucine" di S. Sofia - Forlì. Palaeontographica Italica, 60, 69–87.

    Morton S.G. (1842) Description of some new species of organic remains of the Cretaceous group in the United States, with a tabular view of the fossils hitherto discovered in this formation. Journal of the Academy of Natural Sciences of Philadelphia, 8, 207–227.

    Nützel A. & Geiger D.L. (2006) A new scissurelloid genus and species (Mollusca, Gastropoda) from the Late Triassic Cassian Formation. Paläontologische Zeitschrift, 80, 277–283.

    Okutani T., Fujikura K. & Sasaki T. (1993) New taxa and new distribution records of deepsea gastropods collected from or near the chemosynthetic communities in the Japanese waters. Bulletin of the National Science Museum Series A (Zoology), 19, 123–143.

    Okutani T. & Hashimoto J. (1997) A new species of lucinid bivalve (Heterodonta: Lucinidae) from Kanesu-no-Se Bank near the Mouth of Suruga Bay, with a review of the recent species of the chemosynthetic genus Lucinoma from Japan. Venus, 56, 271–280.

    Olsson A.A. (1931) Contributions to the Tertiary paleontology of northern Peru: Part 4, The Peruvian Oligocene. Bulletins of American Paleontology, 17, 97–264.

    Olu K., Cosel R.v., Hourdez S., Carney S.L. et al. (2007) Amphi-Atlantic cold-seep Bathymodiolus species complexes across the equatorial belt. Deep-Sea Research I, 54, 1890–1911.

    Peckmann J., Birgel D. & Kiel S. (2009) Molecular fossils reveal fluid composition and flow intensity at a Cretaceous seep. Geology, 37, 847–850.

    Peckmann J., Thiel V., Michaelis W., Clari P. et al. (1999) Cold seep deposits of Beauvoisin (Oxfordian; southeastern France) and Marmorito (Miocene; northern Italy): microbially induced authigenic carbonates. International Journal of Earth Sciences, 88, 60–75.

    Pictet F.J. & Campiche G. (1864) Déscription des fossiles du terrain Crétacé des environs de Sainte-Croix. Matériaux pour la paléontologie Suisse, série 4, Bâle and Lyon, Geneva, 558.

    Retowski O. (1893) Die tithonischen Ablagerungen von Theodosia. Ein Beitrag zur Paläontologie der Krim. Bulletin de la Société Impériale des Naturalistes de Moscou, Nouvelle Série, 7, 206–301.

    Rolin Y., Gaillard C. & Roux M. (1990) Ecologie des pseudobiohermes des Terres Noires jurassiques liés à des paléo-sources sous-marines. Le site Oxfordien de Beauvoisin (Drôme, Bassin du Sud-Est, France). Palaeogeography, Palaeoclimatology, Palaeoecology, 80, 79–105.

    Scopoli J.A. (1777) Introductio ad historiam naturalem sistentes genera lapidum, plantarum et animaum, hactenus detecta, caracteribus essentialibus donata, in tribus divisa, subinde ad leges naturae. W. Gerle, Prague, 506.

    Senowbari-Daryan B., Gaillard C. & Peckmann J. (2007) Crustacean microcoprolites from Jurassic (Oxfordian) hydrocarbon-seep deposits of Beauvoisin, southeastern France. Facies, 53, 229–238.

    Speden I.G. (1970) The type Fox Hills Formation, Cretaceous (Maestrichtian), South Dakota. Part 2. Systematics of the Bivalvia. Peabody Museum of Natural History Yale University, Bulletin, 33, 1–222.

    Squires R.L. & Goedert J.L. (1991) New Late Eocene Mollusks from localized limestone deposits formed by subduction-related methane seeps, southwestern Washington. Journal of Paleontology, 65, 412–416.

    Squires R.L. & Goedert J.L. (1996) A new species of Thalassonerita? (Gastropoda: Neritidae?) from a Middle Eocene cold-seep carbonate in the Humptulips Formation, Western Washington. The Veliger, 39, 270–272.

    Stewart R.B. (1927) Gabb's California fossil type gastropods. Proceedings of the Academy of Natural Sciences of Philadelphia, 78, 287–447, pls. 20–32.

    Stewart R.B. (1930) Gabb's California Cretaceous and Tertiary type lamellibranchs. Academy of Natural Sciences of Philadelphia, special publications, 3, 1–314.

    Taviani M. (1994) The "calcari a Lucina" macrofauna reconsidered: Deep-sea faunal oases from Miocene-age cold vents in the Romagna Apennine, Italy. Geo-Marine Letters, 14, 185–191.

    Taylor J.D. & Glover E.A. (2006) Lucinidae (Bivalvia) - the most diverse group of chemosymbiotic molluscs. Zoological Journal of the Linnean Society, 148, 421–438.

    Taylor J.D. & Glover E.A. (2009) New lucinid bivalves from hydrocarbon seeps of the Western Atlantic (Mollusca: Bivalvia: Lucinidae). Steenstrupia, 30, 111–124.

    Thieuloy J.-P. (1972) Biostratigraphie des lentilles a peregrinelles (Brachiopodes) de l'Hauterivien de Rottier (Drome, France). Geobios, 5, 5–53.

    Tomlin J.R.l.B. (1927) Reports on the marine Mollusca in the collections of the South African Museum II. Families Abyssochrysidae, Oocorythidae, Haliotidae, Tonnidae. Annals of the South African Museum, 25, 77–83.

    Turner R.D. (1985) Notes on mollusks of deep-sea vents and reducing sediments. American Malacological Bulletin, Special Edition 1, 23–34.

    Turton W. (1822) Conchylia Insularum Britannicarum. The shells of the British islands, systematically arranged. Collum, Exeter, xlvii+279, 20 pls.

    Van Dover C.L. (2000) The ecology of deep-sea hydrothermal vents. Princeton University Press, Princeton, 424.

    Van Dover C.L., German C.R., Speer K.G., Parson L.M. et al. (2002) Evolution and biogeography of deep-sea vent and seep invertebrates. Science, 295, 1253–1257.

    Warén A. & Bouchet P. (2001) Gastropoda and Monoplacophora from hydrothermal vents and seeps; new taxa and records. The Veliger, 44, 116–231.

    Warén A. & Bouchet P. (2009) New gastropods from deep-sea hydrocarbon seeps off West Africa. Deep-Sea Research I, 56, 2326-2349.

    Williams S.T., Taylor J.D. & Glover E.A. (2004) Molecular phylogeny of the Lucinoidea (Bivalvia): non-monophyly and separate acquisition of bacterial chemosymbionts. Journal of Molluscan Studies, 70, 187–202.