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Biomarkers in the Molar Tooth (MT)-bearing limestones in the Jilin-Liaoning area of China

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Abstract

The origin of Molar Tooth(MT) carbonates has been argued for more than 100 years, which are a kind of Proterozoic carbonates especially composed of microsparite with ptygmatically folded and sheet-like structures. Biomarkers detected in the microcalcsparite from the Wanlong and Xingmincun formations in the Jilin-Liaoning area showed there are abundant normal alkanes, isoprenoids, hopanes, steranes, alkylmethylcyclohexanes, and alkylcyclohexanes, indicating a diversity of biological source: long-chain isoprenoids, the major components of chlorophyll, such as C19, C20, a kind of major biomarkers synthesized early by isoprenoid monomers; hopanes a type of characteristic biomarkers from prokaryote, such as archaebacteria and cyanobacteria; sterane a biomarker for eukaryote; and two kinds of alkanes with C17, C18 as the main peaks representing aquatic bacteria and with C23, C24 as the main peaks representing fungi, respectively. Biomarker analysis showed that MT is the result of bacterial and algal activities, which is a kind of organisms between aerobic and anaerobic bacteria, reproducing well in normal or slightly saline sea water under weak oxidation-reduction conditions, resulting in rapid deposition of calcite as microsparite due to some mechanisms.

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References

  • Alt, D. and D. W. Hyndman, 1986, Roadside geology of Montana: Missoula [M]: Montana, Mountain Press, 427p.

    Google Scholar 

  • Bauerman, H., 1885, Report on the geology of the country near the forth-ninth parallel of north latitude, West of the Rocky Mountains [R]: Canada Geol. Survey Rept. Prog., 1882–1884, Pt. B, p. 1–42.

  • Bertrand-Sarfati, J. and A. Moussine-Pouchkine, 1988, Is cratonic sedimentation consistent with available models? An example from the Upper Proterozoic of the West African craton [J]: Sedimentary Geology, v. 58, p. 255–276.

    Article  Google Scholar 

  • Brassell, S. C., G. Eglinton, J. R. Maxwell, and R. P. Philp, 1978, Natural background of alkanes in the aquatic environment [J]: Proceedings of the International Symposium on Aquatic Pollutants, v. 2, p. 69–86.

    Google Scholar 

  • Bureau of Geology and Mineral Resources of Jilin Province, 1988, Regional geology of Jilin Province [M]: Beijing, Geological Publishing House, 698p. (in Chinese)

    Google Scholar 

  • Bureau of Geology and Mineral Resources of Liaoning Province, 1989, Regional geology of Liaoning Province [M]: Beijing, Geological Publishing House, 855p. (in Chinese)

    Google Scholar 

  • Daly, R. A., 1912, Geology of the North American Cordillera at the forty-ninth parallel [J]: Geological Survey of Canada Memoir 38, Parts I–III, 857p.

  • Feton, C. L. and M. A. Feton, 1937, Belt series of the north: Stratigraphy, sedimentology, paleontology [J]: Geological Society of America Bulletin, v. 48, p. 1873–1970.

    Google Scholar 

  • Ge Ming, Meng Xianghua, Kuang Hongwei, Cai Guoyin, Liu Yanxue, and Liu Weifu, 2003, Molar-tooth carbonates: Carbonate research highlight of the world in the 21st century [J]: Acta Sedimentologica Sinica, v. 21, n. 1, p. 81–89 (in Chinese with English abstract).

    Google Scholar 

  • James, N. P., G. M. Narbonne, and A. G. Sherman, 1998, Molar tooth carbonates: Shallow subtidal facies of the Mid. to Late Proterozoic [J]: Journal of Sedimentary Research, v. 68, p. 716–722.

    Google Scholar 

  • Johns, R. B., T. Belsky, E. D. Mecarthy, A. L. Burlingme, P. Haug, and H. K. Schnees, 1966, The organic geochemistry of ancient sediments (II) [J]: Geochim. Cosmochim. Acta, v. 30, p. 1191–1222.

    Article  Google Scholar 

  • Knoll, A. H. and K. Swett, 1990, Carbonate deposition during the Late Proterozoic era—An example from Spitsbergen [J]: American Journal of Science, v. 290, p. 104–132.

    Google Scholar 

  • Knoll, A. H., J. M. Hayes, and A. J. Kaufman, 1986, Ecular variation in carbon isotoperations from Upper Proterozoic successions of Svalbard and east Greenland [J]: Nature, v. 321, p. 832–838.

    Article  Google Scholar 

  • Kuang Hongwei, 2003, Molar Tooth carbonates sedimentology and its implication of the Neoproterozoic in the Jilin-Liaoning area [D]: Ph. Dissertation, Chinese University of Geosciences (Beijing), 145p. (in Chinese)

    Google Scholar 

  • Li Chao, Peng Ping'an, Shen Guoying, and Fu Jiamo, 1999, Research progress on Precambrian organisms [J]: Chinese Science Bulletin, v. 44, n. 21, p. 2251–2261 (in Chinese with English abstract).

    Google Scholar 

  • Liu Yanxue, 2003, The Neoproterozoic sequence stratigraphy in the Jilin-Liaoning and Xuhuai area [D]: Ph. Dissertation, Chinese University of Geosciences (Beijing), 115p. (in Chinese)

    Google Scholar 

  • Mckirdy, D. M. and J. Hahn, 1982, The composition of kerogen and hydrocarborn in Precambrian rocks, in H. D. Holland and M. Schidlowski, eds., Mineral deposition and the evolution of the biosphere [C]: Berlin, Springer-Verlag, p. 123–154.

    Google Scholar 

  • Meng Xianghua and Ge Ming, 2004, Sequence, event sandits evolution of Sino-Korean Plate [M]: Beijing, Science Press, 450p. (in Chinese)

    Google Scholar 

  • O'Connor, M. P., 1972, Classification and environmental interpretation of the cryptalgal organosedimentary “molar-tooth” structure from the Late Precambrian Belt-Purcell Supergroup [J]: Journal of Geology, v. 80, p. 592–610.

    Article  Google Scholar 

  • Pflug, H. D., 1968, Gesteinbildende organismenaus dem molar tooth limestone der beltseries (Präekambrium) [J]: Palaeophytologie, v. 121, Abt. B, p. 134–141.

    Google Scholar 

  • Pratt, B. R., 1998, Molar-tooth structure in Proterozoic carbonates rocks: Origin from synsedimentary earthquake and implications for the nature and evolution of basins and marine sedimentation [J]: GSA Bulletin, v. 110, p. 1028–1045.

    Article  Google Scholar 

  • Pratt, B. R., 1992, Shrinkage features (“molar tooth” structure) in Proterozoic limestones, new model for their origin through synsedimentary earthquake-induced dewatering, in Geological Society of America, 1992 Annual Meeting [Z]: Abstracts with Programs-Geological Society of America. v. 24, p. 53.

    Google Scholar 

  • Qiao Xiufu and Gao Linzhi, 2000, Earthquake events in Neoproterozoic and Early Paleozoic and their relationship with supercontinental Rodinia in North China [J]: Chiense Science Bulletin, v. 45, p. 931–935 (in Chinese).

    Google Scholar 

  • Shi Jiyang, Xiang Mingju, and Xu Shiping, 2000, Biomarkers and evolution of life in Precambrian [J]: Acta Sedimentologica Sinica, v. 18, n. 4, p. 634–638 (in Chinese with English abstract).

    Google Scholar 

  • Smith, A. G., 1968, The origin and deformation of some “Molar-Tooth” structure in the Precambrian Belt-Purcell Supergroup [J]: Journal of Geology, v. 76, p. 426–433.

    Google Scholar 

  • Summons, R. E., T. G. Powell, and C. J. Boreham, 1988, Petroleum geology and geochemistry of the Middle Proterozoic McArthur Basin, Northern Australia (III) [J]: Geochim. Cosmochim. Acta, v. 52, p. 1747–1763.

    Article  Google Scholar 

  • Wang Tieguan, R. Bernd, and T. Simoneit, 1995, Tricyclic terpanes in Precambrian bituminous sandstone from eastern Yanshan region, North China [J]: Chemical Geology, v. 120, p. 155–170.

    Article  Google Scholar 

  • Winston, D., F. J. Rittel, and G. Funiss, 1999, Gas bubble and expansion on molar-tooth calcite structures in the Middle Proterozoic belt supergroup, western Monrtana-Reply [J]: Journal of Sedimentary Research, v. 69, p. 1140–1145.

    Google Scholar 

  • Yen, T. F., 1975, Genesis and degradation of petroleum hydrocarbonates in marine environments, in T. M. Churich, ed., Marine chemistry in the coastal environment [C]: ACSS Symposium Series 18, Washington, D. C., 237p.

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This project was funded by the International Geological Comparative Program 447 (IGCP447) (No. SC/GEO/546/447), the National Natural Science Foundation of China (Grant No. 40172043), and the Key Lab. of Exploration Technologies for Oil and Gas Resources of Yangtze University.

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Hongwei, K., Yanxia, L., Yantao, Z. et al. Biomarkers in the Molar Tooth (MT)-bearing limestones in the Jilin-Liaoning area of China. Chin. J. Geochem. 23, 334–341 (2004). https://doi.org/10.1007/BF02871305

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