ESTONIAN ACADEMY
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eesti teaduste
akadeemia kirjastus
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SINCE 1952
 
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Estonian Journal of Earth Sciences
ISSN 1736-7557 (Electronic)
ISSN 1736-4728 (Print)
Impact Factor (2022): 1.1
Changes in the morphology of Late Ordovician ostracods along the shelf-to-basin transect of the Baltic Palaeobasin; pp. 157–175
PDF | 10.3176/earth.2022.11

Authors
Stefi Guitor, Tõnu Meidla
Abstract

The present work analyses the numerical distribution data of ostracods in the Late Ordovician (Katian) deposits of Estonia for establishing trends in carapace morphology along a facies profile from a shallow shelf to a deep basin. We present a quantitative analysis of facies-related trends in carapace size, shape and ornamental features. In addition, changes in diversity as well as major changes in the taxonomic composition of the assemblages are addressed, based on the number of individuals. The quantitative analysis of ostracod distribution data reveals distinct trends in the offshore direction: carapaces become larger and shorter, the dominance of smooth valves decreases and the share of ornamented valves increases. Tuberculate valves are most common in open-shelf environments. Species diversity decreases in the offshore direction. The taxonomic composition changes from a clear majority of podocopes to an association of podocopes and palaeocopes, and further to a majority of binodicopes. The fact that these patterns are persistent throughout the Late Ordovician (within three chronostratigraphic units) suggests that they represent environmental control. Some of the results are not in full agreement with previous observations.

References

Ainsaar, L. and Meidla, T. 2000. Facies and stratigraphy of the middle Caradoc mixed siliciclastic-carbonate sediments in Eastern Baltoscandia. Proceedings of the Estonian Academy of Sciences. Geology50(1), 5–23.
https://doi.org/10.3176/geol.2001.1.02

Ayress, M. A. 1993. Ostracod biostratigraphy and palaeo­ecology of the Kokoamu Greensand and Otekaike Limestone (Late Oligocene to Early Miocene), North Otago and South Canterbury, New Zealand. Alcheringa: An Australasian Journal of Palaeontology17(2), 125–151.
https://doi.org/10.1080/03115519308619491

Bassett, M. G., Kaljo, D. and Teller, L. 1989. The Baltic region. A Global Standard for the Silurian System9, 158–170.

Becker, G. 1971. Paleoecology of middle Devonian ostracods from the Eifel region, Germany. Paléo­écologie des Ostracodes. Bulletin du Centre de Recherches Pau-SNPA5, 801–816.

Becker, G. 2000. Progress in mid Palaeozoic palaeo­ceanographical studies from Ostracoda – from local to global importance (a review). Senckenbergiana Lethaea80(2), 555–566.
https://doi.org/10.1007/BF03043365

Becker, G. and Adamczak, F. J. 1994. A remarkable Ordovician ostracod fauna from Orphan Knoll, Labrador Sea. Scripta Geologica107, 1–25.

Becker, G. and Bless, M. J. 1990. Biotope indicative features in Palaeozoic ostracods: a global phenomenon. In Ostracoda and Global Events (Whatley, R. C. and Maybury, C., eds). Chapman and Hall, London, 421–436.
https://doi.org/10.1007/978-94-009-1838-2_32

Benson, R. H. 1959. Ecology of recent ostracodes of the Todos Santos Bay region, Baja California, Mexico. The University of Kansas Paleontological Contribu­tions23.

Benson, R. H. 1961. Ecology of ostracode assemblages. In Treatise on Invertebrate Paleontology. Part Q, Arthropoda 3. Crustacea, Ostracoda (Moore, R. C., ed.). University of Kansas Press, Lawrence, KS, 56–63.

Benson, R. H. 1981. Form, function, and architecture of ostracode shells. Annual Review of Earth and Planetary Sciences9, 59–80.
https://doi.org/10.1146/annurev.ea.09.050181.000423

Bretsky, P. W. and Lorenz, D. M. 1970. Adaptive response to environmental stability: a unifying concept in paleoecology. Proceedings of the North American Paleontological Convention, Part E, 522–550.

Brouwers, E. M. 1988. Palaeobathymetry on the conti­nental shelf based on examples using ostracods from the Gulf of Alaska. In Ostracoda in the Earth Sciences (De Deckker, P., Colin, J.-P. and Peypouquet, J.-P., eds). Elsevier, Amsterdam, 55–76.

Cocks, L. R. M. and Torsvik, T. H. 2021. Ordovician palaeogeography and climate change. Gondwana Research100, 53–72.
https://doi.org/10.1016/j.gr.2020.09.008

Copeland, J. M. 1982. Bathymetry of early Middle Ordovician (Chazy) ostracodes, Lower Esbataottine Formation, District of Mackenzie. Bulletin of the Geological Survey of Canada 347, 1–39.
https://doi.org/10.4095/120058

Dreesen, R., Bless, M. J., Conil, R., Flajs, G. and Laschet, C. 1985. Depositional environment, paleoecology and diagenetic history of the “marbre rouge à crinoïdes de Baelen” (late Upper Devonian, Verviers Synclinorium, eastern Belgium). Annales de la Société Géologique de Belgique108, 311–359.

Dronov, A. V., Ainsaar, L., Kaljo, D., Meidla, T., Saadre, T. and Einasto, R. 2011. Ordovician of Baltoscandia: facies, sequences and sea-level changes. In Ordovician of the World (Gutiérrez-Marco, J. C., Rábano, I. and García-Bellido, D., eds). Instituto Geologico y Minero de Espana, Madrid, 14, 143–150.

Eichwald, E. 1855. Beitrag zur geographischen Ver­breitung der fossilen Thiere Russlands. Alte Periode (Contribution to the geographical distribution of the fossil animals of Russia. Old period). Bulletin de la Société Imperiale des Naturalistes de Moscou28(4), 433–466 (in German).

Einasto, R. 1995. “Liivi keele” omapärast Baltika arengu­loos (On the role of the Livonian tongue in the evolution of the Baltic continent). In Liivimaa geo­loogia (Geology of Livonia) (Meidla, T., Jõeleht, A., Kalm, V. and Kirs, J., eds). University of Tartu, Eesti Geoloogia Selts, Tartu, 23–32 (in Estonian).

Elofson, O. 1941. Zur Kenntnis der marinen Ostracoden Schwedens mit besonderer Berücksichtigung des Skageraks (Marine Ostracoda of Sweden with special consideration of the Skagerrak. Zoologiska Bidrag från Uppsala19, 217–534 (in German).

Gramm, M. N. 1985. The muscle scar in cavellinids and its importance for the phylogeny of platycope ostra­codes. Lethaia18(1), 39–52.
https://doi.org/10.1111/j.1502-3931.1985.tb00683.x

Granier, B. 2012. The contribution of calcareous green algae to the production of limestones: a review. Geodiversitas34(1), 35–60.
https://doi.org/10.5252/g2012n1a3

Hamilton, N. E. and Ferry, M. 2018. ggtern: Ternary diagrams using ggplot2. Journal of Statistical Soft­ware87(3), 1–17.
https://doi.org/10.18637/jss.v087.c03

Hammer, Ø., Harper, D. A. T. and Ryan, P. D. 2001. PAST: Paleontological statistics software package for edu­cation and data analysis. Palaeontologia Electronica4(1), 1–9.

Harris, M. T., Sheehan, P. M., Ainsaar, L., Hints, L., Männik, P., Nõlvak, J. and Rubel, M. 2004. Upper Ordovician sequences of western Estonia. Palaeogeog­raphy, Palaeoclimatology, Palaeoecology210(2–4), 135–148.
https://doi.org/10.1016/j.palaeo.2004.02.045

Hints, L. and Meidla, T. 1997a. Nabala Stage. In Geology and Mineral Resources of Estonia (Raukas, A. and Teedumäe, A., eds). Estonian Academy Publishers, Tallinn, 80–81. 

Hints, L. and Meidla, T. 1997b. Rakvere Stage. In Geology and Mineral Resources of Estonia (Raukas, A. and Teedumäe, A., eds). Estonian Academy Publishers, Tallinn, 79–80.

Hints, L. and Meidla, T. 1997c. Vormsi Stage. In Geology and Mineral Resources of Estonia (Raukas, A. and Teedumäe, A., eds). Estonian Academy Publishers, Tallinn, 81–82.

Hints, O., Nõlvak, J., Paluveer, L. and Tammekänd, M. 2011. Conventional and CONOP9 approaches to biodiversity of Baltic Ordovician chitinozoans. In Ordovician of the World (Gutiérrez-Marco, J. C., Rábano, I. and García-Bellido, D., eds). Instituto Geologico y Minero de Espana, Madrid, 14, 243–249.

Jaanusson, V. 1973. Aspects of carbonate sedimentation in the Ordovician of Baltoscandia. Lethaia6(1), 11–34.
https://doi.org/10.1111/j.1502-3931.1973.tb00871.x

Jaanusson, V. 1976. Faunal dynamics in the Middle Ordovician (Viruan) of Balto-Scandia. In The Ordovician System: Proceedings of a Palaeontological Association Symposium (Bassett, M. G., ed.). University of Wales Press, Cardiff, 301–326.

Kaljo, D., Hints, L., Martma, T. and Nõlvak, J. 2017. A multiproxy study of the Puhmu core section (Estonia, Upper Ordovician): consequences for stratigraphy and environ­mental interpretation. Estonian Journal of Earth Sciences66(2), 77–92.
https://doi.org/10.3176/earth.2017.08

Kaljo, D., Hints, L., Hints, O., Männik, P., Martma, T. and Nõlvak, J. 2011. Katian prelude to the Hirnantian (Late Ordovician) mass extinction: a Baltic perspective. Geo­logical Journal46(5), 464–477.
https://doi.org/10.1002/gj.1301

Kiipli, E., Kiipli, T., Kallaste, T. and Ainsaar, L. 2010. Distribution of phosphorus in the Middle and Upper Ordovician Baltoscandian carbonate palaeobasin. Estonian Journal of Earth Sciences59(4), 247–255.
https://doi.org/10.3176/earth.2010.4.01

Kõrvel, V. 1962. К литостратиграфической характеристике раквереской и набалаской свит в северо-восточной части Эстонии  (On the lithostratigraphy of Rakvere and Nabala formations in northeastern Estonia). ENSV Teaduste Akadeemia Geoloogia Instituudi Uurimused, 1067–76 (in Russian).

Kröger, B., Penny, A., Shen, Y. and Munnecke, A. 2020. Algae, calcitarchs and the Late Ordovician Baltic limestone facies of the Baltic Basin. Facies66(1), 1–14. 
https://doi.org/10.1007/s10347-019-0585-0

Longman, M. W. 1982. Depositional environments. In Echinoderm faunas from the Bromide Formation (Middle Ordovician) of Oklahoma. Monograph 1(Sprinkle, J., ed.). The University of Kansas Paleontological Contributions, Lawrence, KS, 17–30. 

Männil, R. 1966. Evolution of the Baltic Basin during the Ordovician. Valgus, Tallinn.

Männil, R. 1990. The Ordovician of Estonia. In Field Meeting Estonia 1990. An Excursion Guidebook (Kaljo, D. and Nestor. H., eds). Institute of Geology, Estonian Academy of Sciences, Tallinn, 11–20.

Männil, R. and Meidla, T. 1994. The Ordovician System of the East European Platform (Estonia, Latvia, Lithuania, Byelorussia, parts of Russia, the Ukraine and Moldova). In The Ordovician System of the East European Platform and Tuva (Southeastern Russia) (Webby, B. D., Ross, R. J. and Zhen, Y. Y., eds). International Union of Geological Sciences, Trondheim, 28(A), 1–52.

Meidla, T. 1996. Late Ordovician ostracodes of Estonia. Fossilia Baltica 2. Tartu University Press, Tartu.

Meidla, T., Ainsaar, L. and Hints, O. 2014. The Ordovician System in Estonia. In Proceedings of the 4th Annual Meeting of IGCP 591. The Early to Middle Paleozoic Revolution, Estonia, 1019 June 2014 (Bauert, H., Hints, O., Meidla, T. and Männik, P., eds). Institute of Ecology and Earth Sciences, University of Tartu, Institute of Geology at Tallinn University of Technology, Geological Survey of Estonia, Tartu, 116–122. 

Meidla, T., Ani, T. and Lasberg, K. 2017. Eesti maapõue kir­jeldamise standardiseerimine (Standardisation of description of the Estonian sedimentary bedrock succession). Manu­script (in Estonian).

Meidla, T., Tinn, O., Salas, M. J., Williams, M., Siveter, D., Vandenbroucke, T. R. A. and Sabbe, K. 2013. Bio­geo­graphical patterns of Ordovician ostracods. In Early Palaeozoic Palaeobiogeography and Palaeogeography (Harper, D. A. T. and Servais, T., eds). Geological Society London Memoirs38(1), 337–354.
https://doi.org/10.1144/M38.21

Nestor, H. 1990a. Basin development and facies models. In Field Meeting Estonia 1990. An Excursion Guidebook (Kaljo, D. and Nestor, H., eds). Estonian Academy of Sciences, Tallinn, 46–51.  

Nestor, H. 1990b. Biogeography of Silurian stromatoporoids. In Palaeozoic Palaeogeography and Biogeography (McKerrow, W. S. and Scotese, C. R., eds).Geological Society London Memoires, 12, 215–221. 
https://doi.org/10.1144/GSL.MEM.1990.012.01.20

Nestor, H. and Einasto, R. 1997. Ordovician and Silurian carbonate sedimentation basin. In Geology and Mineral Resources of Estonia (Raukas, A. and Teedumäe, A., eds). Estonian Academy Publishers, Tallinn, 192–204.

Nõlvak, J. and Meidla, T. 1990. Locality 3:1. Paekna quarry. In Field Meeting Estonia 1990. An excursion Guidebook (Kaljo, D. and Nestor, H., eds). Estonian Academy of Sciences, Tallinn, 139–142.

Perrier, V. and Siveter, D. J. 2013. Testing Silurian palaeo­geography using ‘European’ ostracod faunas. Geological Society London Memoirs38(1), 355–364.
https://doi.org/10.1144/M38.22

Põlma, L. 1967. О переходной полосе между северной и осевой фациальными зонами ордовика Прибалтики (On the transitional area between the northern and axial lithofacies zones of the East Baltic Ordovician). Eesti NSV Teaduste Akadeemia Toimetised. Keemia, Geoloogia. 16, 272–275 (in Russian).
https://doi.org/10.3176/chem.geol.1967.3.11

Põlma, L. 1982. Сравнительная литология карбонатных пород ордовика Северной и Средней Прибалтики (Com­parative lithology of the Ordovician carbonate rocks in the northern and middle East Baltic). Valgus, Tallinn (in Russian).

Põlma, L., Sarv, L. and Hints, L. 1988. Литология и фауна типовых разрезов карадокского яруса в Северной Эстонии (Lithology and fauna of the type sections of the Caradoc Series in North Estonia). Valgus, Tallinn (in Russian).

Remane, A. 1933. Verteilung und Organisation der ben­thonischen Mikrofauna der Kieler Bucht (Distribution and organisation of the benthic microfauna of the Bay of Kiel). Wissenschaftliche Meeresuntersuntersuchungen, Kiel21, 161–221 (in German).

Rõõmusoks, A. 1983. Eesti aluspõhja geoloogia (Estonian Bedrock Geology). Valgus, Tallinn (in Estonian).

Sames, B., Cifelli, R. L. and Schudack, M. E. 2010. The nonmarine Lower Cretaceous of the North American Western Interior foreland basin: New biostratigraphic results from ostracod correlations and early mammals, and their implications for paleontology and geology of the basin – An overview. Earth-Science Reviews101(3–4), 207–224.
https://doi.org/10.1016/j.earscirev.2010.05.001

Sarv, L. I. 1959. Остракоды ордовика Эстонской ССР (Ordovician ostracodes in the Estonian S.S.R.). Eesti NSV Teaduste Akadeemia Geoloogia Instituudi Uurimused, IV, Tallinn (in Russian).

Sarv, L. and Meidla, T. 1984. Особенности роспространения остракод в пограничных отложениях ордовика и силура Северной Прибалтики (Ostracod Distribution Pattern in the Ordovician–Silurian Boundary Beds of the North East Baltic). Manuscript, deposited in the All-Union Institute of Scientific and Technical Information (VINITI), 3813-84 (in Russian).

Schallreuter, R. E. L. and Siveter, D. J. 1985. Ostracodes across the Iapetus Ocean. Palaeontology28, 577–598.

Schallreuter, R. Krůta, M. and Marek, L. 1996. Ordovician (Dobrotivá Formation) ostracodes and trilobites from Ejpovice (Bohemia) and their relations to faunas of northern and western Europe. Paläontologische Zeitschrift70(3–4), 439–460. 
https://doi.org/10.1007/BF02988084

Schudack, U. and Schudack, M. 2009. Ostracod biostratigraphy in the Lower Cretaceous of the Iberian chain (eastern Spain). Journal of Iberian Geology35(2), 141–168.

Siveter, D. J. 1984. Habitats and modes of life of Silurian ostracodes. In The Autecology of Silurian Organisms. Special papers in Palaeontology (Bassett, M. G. and Lawson, J. D., eds). The Palaeontological Association, London, 3271– 85.

Tinn, O. and Meidla, T. 2001. Middle Ordovician ostracods from the Lanna and Holen Limestones, south-central Sweden. Geologiska Föreningens i Stockhom Förhandlingar123(3), 129–136.
https://doi.org/10.1080/11035890101233129

Van Harten, D. 1986. Ostracode options in sea-level studies. In Sea-Level Research: a Manual for the Collection and Evaluation of Data (van de Plassche, O., ed.). Springer, Dordrecht, 489–501.
https://doi.org/10.1007/978-94-009-4215-8_17

Vannier, J. C., Siveter, D. J. and Schallreuter, R. E. L. 1989. The composition and palaeographical significance of the Ordovician Ostacode faunas of southern Britain, Baltoscandia, and Ibero-Armorica. Palaeontology32(1), 163–222.

Warshauer, S. M. and Berdan, J. M. 1982. Palaeocopid and Podocopid Ostracoda from the Lexington Limestone and Clays Ferry Formation  (Middle and Upper Ordovician) of Central Kentucky. Geological Survey Professional Paper, 1066(H).
https://doi.org/10.3133/pp1066H

Williams, M. and Siveter, D. J. 1996. Lithofacies-influenced ostracod associations in the middle Ordovician Bromide Formation, Oklahoma, USA. Journal of Micropalae­ontology15(1), 69–81.
https://doi.org/10.1144/jm.15.1.69

Williams, M., Stone, P., Siveter, D. J. and Taylor, P. 2001. Upper Ordovician ostracods from the Cautley district, northern England: Baltic and Laurentian affinities. Geological Magazine138(5), 589–607.
https://doi.org/10.1017/S0016756801005726

Williams, M., Floyd, J. D., Salas, M. J., Siveter, D. J., Stone, P. and Vannier, J. M. C. 2003. Patterns of ostracod migration for the ‛North Atlantic’ region during the Ordovician. Palaeogeography, Palaeoclimatology, Palaeoecology195(1–2), 193–228.
https://doi.org/10.1016/S0031-0182(03)00308-0

 

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