Late Jurassic Epiphyton-like cyanobacteria: Indicators of long-term episodic variation in marine bioinduced microbial calcification?

Palaeogeography, Palaeoclimatology, Palaeoecology - Tập 401 - Trang 122-131 - 2014
Emanoil Săsăran1, Ioan I. Bucur1, George Pleş1, Robert Riding2
1Department of Geology, Babeş-Bolyai University, Str. M. Kogălniceanu 1, 400084 Cluj-Napoca, Romania
2Department of Earth and Planetary Sciences, University of Tennessee, Knoxville, TN 37996-1410, USA

Tài liệu tham khảo

Ahr, 1971, Paleoenvironment, algal structures, and fossil algae in the Upper Cambrian of central Texas, J. Sediment. Res., 41, 205 Antropov, 1950, New Species of Foraminifers in the Upper Devonian of Some Regions of the Eastern Russian Platform, 1, 21 Antropov, 1955, Blue-green algae from the Devonian of the central region of the eastern Russian Platform. Uchenye zapiski Kazanskogo gosudarstvennogo universiteta imeni V.I. Ulyanova-Lenina, Tr. Ova Estestvoispytatelei, 115, 41 Arp, 2001, Photosynthesis-induced biofilm calcification and calcium concentrations in Phanerozoic oceans, Science, 292, 1701, 10.1126/science.1057204 Bádenas, 2010, Facies models of a shallow-water carbonate ramp based on distribution of non-skeletal grains (Kimmeridgian, Spain), Facies, 56, 89, 10.1007/s10347-009-0199-z Bornemann, 1886, Die Versteinerungen des cambrischen Schichtensystems der Insel Sardinien nebst vergleichenden Untersuchungen über analoge Vorkommnisse aus anderen Ländern 1, Nova Acta der Kaiserlichen Leopoldinisch-Carolinischen Deutschen Akademie der Naturforscher, 51, 1 Bucur, 2004, The Mesozoic carbonate deposits from the borehole 6042 Deleni (Transylvanian depression). Studia UBB, Geologia, 49, 27, 10.5038/1937-8602.49.2.4 Bucur, 2005, Upper Jurassic–Lowermost Cretaceous benthic algae from Tethys and the European platform: a case study from Poland, Rev. Esp. Micropaleontol., 37, 105 Bucur, 2010 Coniglio, 1985, Calcified algae as sediment contributors to Early Paleozoic limestones: evidence from deep-water sediments of the Cow Head Group, western Newfoundland, J. Sediment. Res., 55, 746 De Castro, 1969, Su alcune tallofite del Mesozoico in Campania, stratigrafia e paleontologia, Boll. Soc. Nat. Napoli, 78, 87 Dupraz, 1999, Microbialites and micro-encrusters in shallow coral bioherms (Middle to Late Oxfordian, Swiss Jura Mountains), Facies, 40, 101, 10.1007/BF02537471 Eliáš, 1995, Early Berriasian ammonites from the Štramberk Limestone of Kotouc quarry (Outer Carpathians, Silesian Unit, Štramberk, Czech Republic), Věstnik Českého geologického ústavu, 70, 27 Ercegovic, 1929, Sur quelques nouveaux types des Cyanophycées lithophytes de la côte adriatique, Arch. Protistenkd., 66, 164 Feng, 2010, Mid-Late Devonian calcified marine algae and cyanobacteria, South China, J. Paleontol., 84, 569, 10.1666/09-108.1 Fischer, 2007, Microhermal nodules of Renalcis-like calcimicrobes from Oxfordian limestones of the Sierra Madre Oriental (Novillo Formation, Mexico), Facies, 53, 239, 10.1007/s10347-006-0099-4 Gandin, 2010, Distribution of the archaeocyath-calcimicrobial bioconstructions on the Early Cambrian shelves, Palaeoworld, 19, 222, 10.1016/j.palwor.2010.09.010 Gradstein, 2012, The Geologic Time Scale 2012 Hoffmann, 2008, Role of microbialites, microencrusters and synsedimentary cement in reef constructions from Štramberk-type limestones from Poland and Romania, Kwartalnik AGH Geologia, 34, 178 Houša, 1990, Stratigraphy and calpionellid zonation of the Štramberk Limestone and associated Lower Cretaceous beds. Atti del Secondo Convegno Internazionale Fossili, Evoluzione Ambiente, 365 Houša, 2004, Ammonoidea of the Lower Cretaceous deposits (Late Berriasian,Valanginian, Early Hauterivian) from Štramberk, 18, 7 Hughes, 2010, Calcimicrobe tubules in uppermost Jurassic Arab-A carbonates of Saudi Arabia, GeoArabia, 15, 17, 10.2113/geoarabia150117 Insalaco, 1997, Oxfordian (Upper Jurassic) coral reefs in Western Europe: reef types and conceptual depositional model, Sedimentology, 44, 707, 10.1046/j.1365-3091.1997.d01-44.x Kempe, 1994, The role of alkalinity in the evolution of ocean chemistry, organization of living systems, and biocalcification processes, Bull. Inst. Océanogr. Monaco, 13, 61 Kiessling, 2002, Secular variations in the Phanerozoic reef ecosystem, 625 Konhauser, 2012, Bacterial biomineralization, 105 Kopaska-Merkel, 1999, New (?) bioherm-building tubular organism in Jurassic Smackover Formation, Alabama. Gulf Coast association of Geological Societies, Transactions, 49, 300 Korde, 1958, Sistematicheskoe polozhenie i stratigraficheskoe znachenie roda Epiphyton. Bulleten' Moskovskogo obshchestva ispytateley prirody, Otdel geologicheskiy, 33, 156 Korde, 1961, Vodorosli kembriya yugo-vostoka Sibirskoy platformy, 89, 1 Korde, 1973, Vodorosli kembriya (Cambrian algae), 139, 1 Laval, 2000, Modern freshwater microbialite analogues for ancient dendritic reef structures, Nature, 407, 626, 10.1038/35036579 Lehrmann, 1999, Early Triassic calcimicrobial mounds and biostromes of the Nanpanjiang basin, south China, Geology, 27, 359, 10.1130/0091-7613(1999)027<0359:ETCMAB>2.3.CO;2 Leinfelder, 1985, Cyanophyte calcification morphotypes and depositional environments (Alenquer Oncolite, Upper Kimmeridgian?, Portugal), Facies, 12, 253, 10.1007/BF02536982 Leinfelder, 1993, Microbial crusts of the Late Jurassic: composition, palaeoecological significance and importance in reef construction, Facies, 29, 195, 10.1007/BF02536929 Leinfelder, 1996, Paleoecology, growth parameters and dynamics of coral, sponge and microbolite reefs from the Late Jurassic, 227 Leinfelder, 2002, Jurassic reef patterns — the expression of a changing globe, 72, 465 Lowenstam, 1981, Minerals formed by organisms, Science, 211, 1126, 10.1126/science.7008198 Luchinina, 1975, Paleoal'gologhicheskaya kharakteristika rannego kembriya Sibirskoy platformy (yugo-vostok), 216, 1 Luchinina, 2008, The morphology of the genus Epiphyton Bornemann, Geol. Croat., 61, 105 Luperto Sinni, 1979, Cretacicladus minervini n.gen. n.sp., nuova alga (Chlorophyta) del Cenomanio delle Murge, 8, 30 Mann, 2001 Maslov, 1956, Iskopaemye izvestkovye vodorosli SSSR, 160, 1 Masse, 1969, Présence de structures à affinités stromatolitiques dans l'Urgonien des îles du Frioul (Rade de Marseille), Bull. Soc. Geol. Fr., 11, 128, 10.2113/gssgfbull.S7-XI.1.128 Masse, 1976, Les calcaires urgoniens de Provence: Stratigraphie, Paléontologie; les paléoenvironnements et leur evolution Masse, 1979, Schizophytoïdes du Crétacé inférieur. Caractéristiques et signification écologique, Bull. Centr. Rech. Explor.-Prod. Elf-Aquitaine, 3/2, 685 Olivier, 2003, Microbialite morphology, structure and growth: a model of the Upper Jurassic reefs of the Chay Peninsula (western France), Palaeogeogr. Palaeoclimatol. Palaeoecol., 193, 383, 10.1016/S0031-0182(03)00236-0 Olivier, 2004, Palaeoenvironmental control on sponge reefs and contemporaneous deep-shelf marl–limestone deposition (Late Oxfordian, southern Germany), Palaeogeogr. Palaeoclimatol. Palaeoecol., 212, 233, 10.1016/j.palaeo.2004.06.003 Olivier, 2012, Ecological succession evidence in an Upper Jurassic coral reef system (Izwarn section, High Atlas, Morocco), Geobios, 45, 555, 10.1016/j.geobios.2012.05.002 Ourribane, 2000, Rôle des microbialites et des «micro-encroûtants» dans la lithification récifale: exemples du Jurassique supérieur de l'Atlas maghrébin (Maroc et Tunisie), C. R. Acad. Sci. de Paris Sci. Terre Planetes, 330, 407 Pentecost, 1981, The tufa deposits of the Malham district, North Yorkshire, Field Stud., 5, 365 Pentecost, 1986, Calcification in Cyanobacteria, vol. 30, 73 Pia, 1927, Thallophyta, 1, 1 Picha, 2006, Geology and hydrocarbon resources of the Outer West Carpathians and their foreland, Czech Republic, 84, 49 Pleş, 2013, Encrusting micro-organisms and microbial structures in Upper Jurassic limestones from the Southern Carpathians (Romania), Facies, 59, 19, 10.1007/s10347-012-0325-1 Pratt, 1984, Epiphyton and Renalcis: diagenetic microfossils from calcification of coccoid blue-green algae, J. Sed. Petrol., 54, 948 Pratt, 2001, Calcification of cyanobacterial filaments; Girvanella and the origin of lower Paleozoic lime mud, Geology, 29, 763, 10.1130/0091-7613(2001)029<0763:COCFGA>2.0.CO;2 Riding, 1982, Cyanophyte calcification and changes in ocean chemistry, Nature, 299, 814, 10.1038/299814a0 Riding, 1991, Calcified cyanobacteria, 55 Riding, 2001, Calcified algae and bacteria, 445 Riding, 2006, Cyanobacterial calcification, carbon dioxide concentrating mechanisms, and Proterozoic–Cambrian changes in atmospheric composition, Geobiology, 4, 299, 10.1111/j.1472-4669.2006.00087.x Riding, 2005, Geobiology of microbial carbonates: metazoan and seawater saturation state influences on secular trends during the Phanerozoic, Palaeogeogr. Palaeoclimatol. Palaeoecol., 219, 101, 10.1016/j.palaeo.2004.11.018 Riding, 1993, Silurian calcareous algae, cyanobacteria, and microproblematica from the Alexander terrane, Alaska, J. Paleontol., 67, 710, 10.1017/S002233600003701X Riding, 1982, Affinity of the Cambrian alga Tubomorphophyton and its significance for the Epiphytaceae, Palaeontology, 25, 869 Riding, 1982, Recent freshwater oscillatoriacean analogue of the Lower Palaeozoic calcareous alga Angulocellularia, Lethaia, 15, 105, 10.1111/j.1502-3931.1982.tb01129.x Riding, 1972, Note on the?algal genera Epiphyton, Paraepiphyton, Tharama, and Chabakovia, J. Paleontol., 46, 918 Rusciadelli, 2013, Carbonate production of ancient debris-dominated reefs: an outcrop-based example from the Upper Jurassic reef complex of the central Apennines (Italy), Geol. Soc. Am. Bull., 125, 1520, 10.1130/B30850.1 Săsăran, 2006 Schmid, 1996, Marine Mikrobolithe und Mikroencruster aus dem Oberjura, Profil, 9, 101 Scott, 1988, Evolution of Late Jurassic and Early Cretaceous reef biotas, Palaios, 3, 184, 10.2307/3514529 Shen, 1997, A Late-Devonian (Famennian) Renalcis–Epiphyton reef at Zhaijiang, Guilin, South China, Facies, 37, 195, 10.1007/BF02537379 Shiraishi, 2004, Composition and spatial distribution of microencrusters and microbial crusts in upper Jurassic–lowermost Cretaceous reef limestone (Torinosu Limestone, southwest Japan), Facies, 50, 217, 10.1007/s10347-004-0022-9 Vologdin, 1962 Voronova, 1976, Palaeozoic Algae and Microphytolites, 294, 1 Woo, 2008, Chambers of Epiphyton thalli in microbial buildups, Zhangxia Formation (Middle Cambrian), Shandong Province, China, Palaios, 23, 55, 10.2110/palo.2006.p06-103r Wray, 1967, Upper Devonian calcareous algae from the Canning Basin, Western Australia, 3 Zaninetti, 1978, Un organisme incertae sedis nouveau dans le Permien supérieur du Sud-Zagros, Iran, Note du Laboratoire de Paléontologie de l’Université de Genève, 3, 17