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Paleoecological significance of the trace fossils of Dhosa Oolite Member (Jumara Formation), Jhura dome, Mainland Kachchh, Western India

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Journal of the Geological Society of India

Abstract

Dhosa Oolite Member of the Jumara Formation comprises alternating bands of oolitic limestones and shales, exposed in Jhura dome of Mainland Kachchh, Western India. This sequence is highly bioturbated and exhibits a moderate diversity and behaviourally complex assemblage of ichnospecies. The rhythmically bedded sequence shows three different levels of preservation of traces. Epichnial tiering consists of moderately bioturbated oolitic limestone exhibiting horizontal or low-angle protrusive/retrusive biogenic laminae, commonly dominated by feeding structures like Rhizocorallium jenense, R. irregulare, Zoophycos brianteus and Zoophycos isp. The endichnial structures within the oolitic limestone can be separated into two different preservational trace fossil suites. The endichnial shallow suites consist chiefly of deposit feeders like Chondrites intricatus, C. targionii, Planolites beverleyensis, Taenidium cameronensis, Thalassinoides isp., Z. brianteus, Z. cf circinnatus and Zoophycos isp. and few suspension feeder forms like Palaeophycus tubularis; while endichnial deep suites consist of Chondrites intricatus, Skolithos linearis and Zoophycos isp. Hypichnial structures consists abundant, cylindrical, branched, horizontal, large-sized three dimensional feeding burrows of Thalassinoides isp. and somewhat irregular, obtuse angle ramification burrows of Phycodes isp., which are attached to the lower surface of the casting medium. The trace fossil association indicates Cruziana ichnofacies and abundance of Zoophycus species below the fair weather wave base level is largely a preservational artifact. The preservational processes of the trace fossils indicate soft substrate and diversity and their abundance reflects the other palaeoecological parameters of the open shallow marine environments.

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References

  • Alpert, S.P. (1975) Planolites and Skolithos from the Upper Precambrian-Lower Cambrian White-Inyo Mountains, California. Jour. Palaeont., v.49, pp.508–521.

    Google Scholar 

  • Billings, E. (1862) New species of fossils from different parts of the Lower, Middle and Upper Silurian rocks of Canada. In: Paleozoic Fossils, v.1(1861–1865). Geol. Soc. Canada Adv. Sheet, pp. 96–168.

    Google Scholar 

  • Biswas, S.K. (1977) Mesozoic rock stratigraphy of Kutch. Quart. Jour. Geol., Min. Metal. Soc. India, v.49, pp.1–52.

    Google Scholar 

  • Biswas, S.K. (1993) Geology of Kutch. KDM Institute of Petroleum Exploration, Dehradun (released 2001), v.1, 450p.

  • Brady, L.F. (1947) Invertebrate tracks from the Coconino sandstone of Northern Arizona. Jour. Paleontology, v.21, pp.466–472.

    Google Scholar 

  • Brongniart, A. T. (1828) Historie des végétaux fossiles, ou recherches botaniques et géologiques sur les végétaux renfermés dans les diverses couches du globe. G. Dufour and E. d’Ocagne, Paris, v.1, pp.1–136.

    Google Scholar 

  • Chamberlain, C.K. (1971) Morphology and ethology of trace fossils from Ouachita Mountains Southeast Oklahoma. Jour. Paleont., v.45, pp.212–246.

    Google Scholar 

  • Chamberlain, C.K. (1977) Ordovician and Devonian Trace fossils from Nevada. Neva. Bull. Min. Geol., v.90, pp.1–24.

    Google Scholar 

  • D’alessandro, A. and Bromley, R.G. (1987) Meniscate trace fossils and Muensteria-Taenidium problem. Paleontology, v.30, pp.743–763.

    Google Scholar 

  • Desai B.G., Patel, S. J., Rajita Shukla And Divyesh Surve (2008) Analysis of Ichnoguilds and their Significance in Interpreting Ichnological Events: A Study from Jhuran Formation (Upper Jurassic), Western Kachchh, India. Jour Geol. Soc. India, v.72, pp.458–466.

    Google Scholar 

  • Ehrenberg, K. (1944) Ergänzende Bemerkungen zu den seinerzeit aus dem Miozän von Burgschleinitz beschriebenen Gangkernen und Buuten dekapoder Krebse. — Paläontologische Zeitschrift,Stuttgart, v.23, pp.345–359

    Google Scholar 

  • Fillion, D. and Pickerill, R.K. (1990) Ichnology of the Upper Cambrian? to Lower Ordovician Bell Island and Wabana groups of New Foundland, Canada. Paleont. Can., v.7, pp.1–119.

    Google Scholar 

  • Frey, R.W., Pemberton, S.G. and Fagerstrom, J.A. (1984) Morphological, ethological and environmental significance of the ichnogenera Scoyenia and Anchorichnus. Jour. Paleont., v.58, pp.511–528.

    Google Scholar 

  • Fu, S. (1991) Funktion, Verhalten und Einteilung fucoider und lophoctenoider Lebensspuren. Cour. Forsch. Senckn., v.135, pp.1–79.

    Google Scholar 

  • Fürsich, F.T. (1974a) On Diplocraterion TORELL, 1870 and significance of morphological features in vertical, spreiten bearing, U-shaped trace fossils. Jour. Paleont., v.48, pp.952–962.

    Google Scholar 

  • Fürsich, F.T. (1974b) Corallian (Upper Jurassic) trace fossils from England and Normandy. Stuttg. Beit. Zur., Natutr. Ser. B, v.13, pp.1–51.

    Google Scholar 

  • Fürsich, F.T. (1998) Environmental distribution of Trace fossils in the Jurassic of Kachchh (Western India). Facies, v.39, pp.243–272.

    Article  Google Scholar 

  • Fürsich, F.T., Oschmann, W., Singh, I.B. and Jaitly, A.K. (1992) Hardgrounds, reworked concretion levels and condensed horizons in the Jurassic of Western India: their significance for basin analysis. Jour. Geol. Soc. London, v.149, pp.313–331.

    Article  Google Scholar 

  • Gaillard, C., Hennebert, M. and Olivero, D. (1999) Palaeoenvironmental significance of the trace fossil Zoophycos in the Upper Tournaisian Limestone of Tournai (Lower Carboniferous, Belgium). Geobios, v.32, pp.513–524

    Article  Google Scholar 

  • Geinitz, H.B. (1846) Grundriss der Versteinerungskunde, Arnold (Dresden & Leipzig), v.8, pp.1–815.

    Google Scholar 

  • Haldeman, S.S. (1840) Supplement to number one of “A monograph of the Limniades and other freshwater bivalve shells of the apparently new animals in different classes, and names and characters of the subgenera in Paludina and Anculosa, Philadelphia, pp.1–3.

  • Hall, J. (1843) Geology of New York, Part 4. Survey of the Fourth Geological District: Carroll & Cook, Albany, 525p.

  • Hall, J. (1847) Palaeontology of New York. C. Van Benthuysen, Albany, v.1, pp.1–338.

    Google Scholar 

  • Hall, J. (1863) Observations upon some spiral growing fucoidal remains of the Paleozoic rocks of New York, New York state cabinet, 16th Annual Report, pp.76–83.

  • Häntzschel, W. (1975) Trace fossils and problematica. In: C. Teichert (Ed.), Treatise on Invertebrate Paleontology, part W, Miscellanea, Supplement I. Boulder, Colorado and Lawerence, Kansas (Geol. Soc. Amer. & University of Kansas Press) pp.W1–W269.

  • Heer, O. (1876–77) Flora fossilis Helvetiae. Die vorweltliche Flora der Schweiz. J. Würster & Co. pp.1–182.

  • Howard, J.D. and Frey, R.W. (1984) Characteristic trace fossils in near shore to offshore sequences, Upper Cretaceous of eastcentral Utah. Canadian Jour. Earth Sci., v.21, pp.200–219.

    Google Scholar 

  • Keighley, D.J. and Pickerill, R.K. (1995) The ichnotaxa Palaeophycus and Planolites: historical perspectives and recommendations. Ichnos, v.3, pp.301–309.

    Article  Google Scholar 

  • Kennedy, W.J. (1967) Burrows and surface traces from the Lower Chalk of Southern England. Bull. British Mus. (Nat. Hist), Geol., v.5, pp.127–167.

    Google Scholar 

  • Kotake, N. (1997) Ethological interpretation of the trace fossil Zoophycos in the Hikoroichi Formation (Lower Carboniferous), southern Kitakami Mountains, northeast Japan. Paleontological Res., v.1, pp.15–28.

    Google Scholar 

  • Krishna, J., Pathak, D.B. and Pandey, B. (1998) Development of Oxfordian (Early Upper Jurassic) in the most proximally exposed part of Kachchh Basin at Wagad outside the Kachchh Mainland. Jour. Geol. Soc. India, v.52, pp.513–522.

    Google Scholar 

  • Krishna, J., Pathak, D.B., Pandey, B. and Ojha, J.R. (2000) Transgressive sediment intervals in the Late Jurassic of Kachchh, India. Geo Research Forum, v.6, pp.321–332.

    Google Scholar 

  • Kulkarni, K.G. and Borkar, V.D. 2000 Palaeoenvironmental niches towards the close of deposition of Dhosa Oolite (Early Oxfordian), Kutch, India. Indian Jour. Petroleun Geol., v.9, pp.49–59.

    Google Scholar 

  • Kulkarni, K.G. and Borkar, V.D. (1996) Comments on the range of Ichnogenus Skolithos from the Kaimur Group. In: Pandey et al. (Eds.), Contributions to XV Indian Coll. Micropal. Strat. Jour., Dehradun, pp.519–523.

  • Martino, R.L. (1989) Trace fossils from marine facies of the Kanawh Formation (Middle Pannsytranian), West Virginia. Jour. Paleont., v.63(4), pp.389–403.

    Google Scholar 

  • Massalongo, A. (1855) Zoophycos, novum genus plantorum fossilium. Antonelli (Verona), pp.45–52.

  • Mayer, G. (1954) Neue Beobachtungen an Lebensspuren aus dem unteren Hauptmuschelkalk (Trochitenklk) von Wiesloch: Neus Jahrb, Geologie, Palaont., Abhandl., v.99, pp.223–229.

    Google Scholar 

  • Miller, M. F. (1991) Morphology and paleoenvironmental distribution of Paleozoic Spirophyton and Zoophycos; implications for the Zoophycos ichnofacies, Palaios, v.6, pp.410–425.

    Article  Google Scholar 

  • Nicholson, H.A. (1873) Contributions to the study of the errant annelids of the older Paleozoic rocks. Proc. Royal Soc. London, v.21, pp.288–290; [also Geol. Mag., v.10, pp.309–310].

    Google Scholar 

  • Patel. S.J., Desai, B.G., Vaidya, A.D. and Shukla, R. (2008) Middle Jurassic Trace Fossils from Habo Dome, Mainland Kachchh, Western India. Jour. Geol. Soc. India, v.71, pp.345–362.

    Google Scholar 

  • Patel, S.J. and Desai, B.G. (2009) Animal-sediment relationship of the crustaceans and polychaetes in the intertidal zone around Mandvi, Gulf of Kachchh, Western India. Jour. Geol. Soc. India, v.74, pp.233–259.

    Article  Google Scholar 

  • Pemberton, S.G. and Frey, R.W. (1982) Trace fossil nomenclature and the Planolites-Palaeophycus dilemma. Jour. Paleon., v.56, pp.843–881.

    Google Scholar 

  • Richter, R. (1850) Aus der thuringischen Grauwacke: Deutsch. Geol. Gesell., Zeitschr., v.2, pp.198–206.

    Google Scholar 

  • Rindsberg, A.K. (1994) Ichnology of the Upper Mississippian Hertelle sandstone of Alabama, with notes on other Carboniferous formations. Geol. Surv.Alabama, Bull., v.158, pp.1–107.

    Google Scholar 

  • Schlirf, M (2000) Upper Jurassic Trace fossils from the Boulonnais (Northern France)., Geol.et Paleont., v.34, pp.145–213.

    Google Scholar 

  • Seilacher, A. (1953) Studien Zur Palichnologie — I. Über die Methoden der Palichnologie. Neus Jahrbuch fur Geologie und palaontologie. Abhandlugen, v.96, pp.421–425.

    Google Scholar 

  • Seilacher, A. (1955) Spuren und Lebensweise der Trilobiten. Akad.Wiss. Lit., Abh. Math. Naturwiss. Klasse, pp.342–372.

  • Seilacher, A. (1967) Bathymetry of trace fossils. Marine Geology, v.5, pp.413–428.

    Article  Google Scholar 

  • Simpson, S. (1957) On the Trace fossil Chondrites. Qatr. Jour. Geol Soc. London, v.107, pp.475–499.

    Google Scholar 

  • Singh, I.B. (1989) Dhosa Oolite — A Transgressive Condensation Horizon of Oxfordian Age in Kachchh, Western India. Jour. Geol. Soc. India, v.34, pp.152–160.

    Google Scholar 

  • Sternberg, K.M. and Graf. VON (1833) Versuch einer geognostisch-botanischen Darstellung der Flora der Vorwelt. Leipzig, Prague, v.5 & 6, pp.1–80.

    Google Scholar 

  • Uchman, A.F. (1995) Taxonomy and Paleoecology of flysch trace fossils: The Marnoso-arenacea Formation and associated facies (Miocene, Northen Apennines, Italy). Beringeria, pp.1–115.

  • Uchman, A.F. (1999) Ichnology of the Rhenodanubian Flysch (Lower Cretaceous-Eocene) in Austria and Germany. Beringeria; v. 25; pp. 67–173.

    Google Scholar 

  • Zenker, J.C. (1836) In: J.C. Zenker (Ed.), Historischtopographisches Taschenbuch von Jena und seiner Umgebung besonders in naturwissenschaftlicher und medicinischer Bezeihung. pp.1–338.

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Patel, S.J., Desai, B.G. & Shukla, R. Paleoecological significance of the trace fossils of Dhosa Oolite Member (Jumara Formation), Jhura dome, Mainland Kachchh, Western India. J Geol Soc India 74, 601–614 (2009). https://doi.org/10.1007/s12594-009-0175-9

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