Discovery of Early Carboniferous plant and trace fossils from the Ta′erbahatai Formation in northwestern Junggar and its palaeogeographical significance
Zong Ruiwen1, Fan Ruoying1, Zhao Long1, Gong Yiming1, Wang Guocan2
1 State Key Laboratory of Biogeology and Environmental Geology,China University of Geosciences,Wuhan 430074,Hubei;
2 State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences,Wuhan 430074,Hubei
The Early Carboniferous Visean plant fossils are reported for the first time from the upper part of the Ta′erbahatai Formation in northwestern Junggar,including Archaeocalamites scrobiculatus,Sublepidodendron grabaui,S. mirabile,S. cf. mirabile,Sublepidodendron sp., Lepidodendropsis sp., Mesocalamites sp., Sigillaria sp., Rhodeopteridium ?sp. and Knorria sp.. This floral assemblage demonstrates that the age of the Ta′erbahatai Formation can be extended to the Early Carboniferous. The uppermost Ta′erbahatai Formation and its overlaying Heishantou Formation are obviously diachronous on the basis of fossil evidences and contact relationships of strata. The age of the uppermost Ta′erbahatai Formation extends from the Tournaisian to Visean and the Heishantou Formation is from the Tournaisian to Serpukhovian. Deep-sea trace fossils preserved together with plant fossils indicate bathyal-abyssal environment in the Tarbgatay area during the early-middle Early Carboniferous,in contrast to the littoral and shallow marine conditions in the Jimunai area at the same time. The different sedimentary systems are largely attributed to the extensive transgression in northern Xinjiang and the subduction of the Irtysh-Zaysan Ocean Plate under the Kazakhstan Plate during the Early Carboniferous,which also account for the diachroneity of the uppermost Ta′erbahatai Formation and Heishantou Formation in northwestern Junggar.
About author: Zong Ruiwen,born in 1988,is a Ph D. candidate of paleontology and stratigraphy at China University of Geosciences(Wuhan). E-mail: zong_1658@126.com
Cite this article:
Zong Ruiwen,Fan Ruoying,Zhao Long et al. Discovery of Early Carboniferous plant and trace fossils from the Ta′erbahatai Formation in northwestern Junggar and its palaeogeographical significance[J]. JOPC, 2014, 16(3): 319-334.
Zong Ruiwen,Fan Ruoying,Zhao Long et al. Discovery of Early Carboniferous plant and trace fossils from the Ta′erbahatai Formation in northwestern Junggar and its palaeogeographical significance[J]. JOPC, 2014, 16(3): 319-334.
蔡士赐. 1988. 新疆塔尔巴哈台山南坡奥陶—志留纪四射珊瑚[J]. 新疆地质, 6(2): 54-58. 陈家富,韩宝福,张磊. 2010. 西准噶尔北部晚古生代两期侵入岩的地球化学、Sr-Nd同位素特征及其地质意义[J]. 岩石学报, 26(8): 2317-2335. 陈其奭. 1987. 钱塘地区早石炭世地层和植物群[J]. 中国地质科学院南京地质矿产研究所所刊, 8(2): 71-81. 陈秀琴,Mawson R,Talent J A,等. 2009. 新疆北部晚泥盆世生物多样性研究及生物“避难所”的认识[C]. 中国古生物学会第十次全国会员代表大会暨第25届学术年会论文摘要集,80-81. 崔丽,王德明. 2009. 华南早石炭世亚鳞木属( Sublepidodendron )植物研究及其分类学意义[J]. 北京大学学报(自然科学版),45(3):85-94. 邓宝. 1978. 陕南山阳早石炭世植物群之发现及其地层意义[J]. 地质学报,52 (1): 15-21. 窦亚伟,孙喆华. 1985. 新疆北部晚古生代植物概况[J]. 地质学报,59 (1): 1-11. 范国清,刘晓峰. 1994. 东北南部早石炭世植物群研究[J]. 辽宁地质,11(增刊1): 77-130. 冯少南. 1984. 长江三峡地区生物地层学(3)?晚古生代分册[M]. 北京:地质出版社,298-299. 冯少南,胡雨帆,朱家柟. 1982. 广东早石炭世植物化石新资料及其组合序列[J]. 植物学报, 24(4): 374-382. 龚一鸣. 1992. 新疆北部泥盆纪放射虫及其岩相分布和环境意义[J]. 地层学杂志, 16(3): 224-228. 龚一鸣. 1993. 新疆北部泥盆纪火山沉积岩系作用相类型、序列及其与板块构造的关系[J]. 地质学报, 67(1): 37-51. 龚一鸣. 1994. 新疆北部泥盆系遗迹化石的拓扑遗迹学研究[J]. 古生物学报, 33(4): 472-498. 龚一鸣,刘本培. 1994. 新疆北部泥盆纪火山沉积岩系的板块沉积学研究[M]. 湖北武汉:中国地质大学出版社,1-138. 韩宝福,郭召杰,何国琦. 2010. “钉合岩体”与新疆北部主要缝合带的形成时限[J]. 岩石学报, 26(8): 2233-2246. 晋慧娟,李育慈. 1991. 准噶尔盆地晚古生代深水斜坡沉积中的遗迹相及其环境分析[J]. 中国科学 B辑, 21(4): 408-415. 晋慧娟,李育慈. 1998a. 西秦岭北带泥盆纪 Nereites 遗迹相及其环境分析[J]. 沉积学报, 16(1): 15-21. 晋慧娟,李育慈. 1998b. 准噶尔盆地西北缘石炭纪生物成因的沉积构造研究[J]. 科学通报, 43(17): 1888-1891. 晋慧娟,李育慈,李菊英. 1987. 新疆准噶尔盆地西北缘石炭纪深水沉积的发现及其沉积特征[J]. 沉积学报, 5(3): 125-134. 金建华,吴起俊. 2001. 广州地区晚泥盆世至早石炭世地层及植物组合[J]. 地层学杂志, 25(3): 166-173. 匡立春,齐雪峰,王绪龙,等. 2011. 新疆西准噶尔布龙果尔古油藏的发现及其石油地质意义[J]. 地质学报, 85(2): 224-233. 李锦轶,何国琦,徐新,等. 2006. 新疆北部及邻区地壳构造格架及其形成过程的初步探讨[J]. 地质学报, 80(1): 148-168. 李菊英,晋慧娟. 1989. 新疆准噶尔盆地西北缘石炭纪浊积岩系中遗迹化石的发现及其意义[J]. 地质科学, 24(1): 9-15. 李星学,蔡重阳. 1979. 中国泥盆纪植物群[J]. 地层学杂志, 3(2): 90-95. 廖卓庭,王玉净,王光良,等. 1993. 新疆北部石炭纪生物地层研究新进展[A]. 见:涂光炽主编. 新疆北部固体地球科学新进展[M]. 北京:科学出版社,79-93. 刘陆军,姚兆奇. 2007. 广西扶绥东罗二叠纪长兴期海相层中的植物大化石[J]. 古生物学报, 46(2): 195-212. 卢礼昌. 1997. 新疆准噶尔盆地呼吉尔斯特组孢子组合[J]. 微体古生物学报, 14(3): 295-314. 马学平,宗普,张宇波,等. 2011. 新疆西准噶尔上泥盆统洪古勒楞组及相关地层研究[C]. 中国古生物学会第26届学术年会论文集,81-83. 孟繁松,李旭兵,张振来,等. 2003. 贵州关岭生物群中发现完美的植物化石[J]. 地质通报, 22(4): 271-273. 米家榕,金建华,高联达. 2001. 辽东太子河流域早石炭世植物古生态与古环境[M]. 北京:地质出版社,1-124. 米家榕,孙克勤,金建华. 1990. 辽宁本溪早石炭世植物化石[J]. 长春地质学院学报, 20(4): 361-368. 萨尔瓦多 A 主编. 1994. 金玉玕等译校. 2000. 国际地层指南: 地层分类、术语和程序(第二版)[M]. 北京: 地质出版社,20,65. 沈光隆,孙柏年. 1992. 祁连山北麓石炭纪植物化石组合序列[J]. 甘肃科学学报, 4(2): 8-14. 孙克勤,史晓颖,崔金钟. 2000. 全球石炭纪和二叠纪植物地理分区[J]. 植物学通报, 17(3): 193-203. 王宝瑜. 1991. 新疆北部下中泥盆统层序及其界线讨论[J]. 新疆地质, 9(3): 249-259. 王祺,郝守刚. 2003. 亚鳞木属[ Sublepidodendron (Nathorst)Hirmer,1927]的研究述评[J]. 古生物学报, 42(4): 598-612. 王庆明. 2000. 新疆泥盆纪古地理[J]. 新疆地质, 18(4): 319-323. 王怿,徐洪河,付强,等. 2004. 新疆北部中泥盆世呼吉尔斯特组的一种细小植物[J]. 古生物学报 ,43(4): 461-471. 王宇,卫巍,庞绪勇,等. 2009. 塔城地区晚泥盆世沉积特征及其构造古地理意义[J]. 岩石学报, 25(3): 699-707. 卫巍,庞绪勇,王宇,等. 2009. 北疆沙尔布尔提山地区早泥盆—早石炭世沉积相、物源演变及其意义[J]. 岩石学报, 25(3): 689-698. 吴乃元. 1991. 石炭系[A]. 见:新疆地质矿产局地质矿产研究所等著. 新疆古生界(新疆地层总结之二)下[M]. 新疆乌鲁木齐:新疆人民出版社,167-188. 吴乃元,王明倩. 1983. 新疆北部石炭系地层层序和其化石组合特征[J]. 新疆地质, 1(2): 17-31. 吴晓智,向书政,赵永德,等. 1995. 新疆北部福海地区上古生界岩相古地理[J]. 新疆石油地质, 16(4): 335-342. 吴秀元. 1992. 河南固始早石炭世杨山组植物群[J]. 古生物学报, 31(5): 564-584. 吴秀元. 1995. 石炭纪植物群[A]. 见:李星学主编. 中国地质时期植物群[M]. 广东广州:广东科技出版社,58-93. 吴秀元,赵修祜. 1981. 江苏句容高骊山组植物化石[J]. 古生物学报, 20(1): 50-59. 吴秀元,王军,张宜,等. 2005. 甘肃靖远、景泰早石炭世维宪期植物群[J]. 古生物学报, 44(2): 175-202. 夏凤生. 1996. 新疆准噶尔盆地西北缘洪古勒楞组时代的新认识[J]. 微体古生物学报, 13(3): 277-285. 新疆地质局区域地质测量大队地层分队,国家计委地质局地质科学研究院地矿所. 1974. 新疆西准噶尔沙尔布尔提山及萨吾尔山地区古生代地层简介[J]. 西北地质,7(1):29-38. 新疆维吾尔自治区地质矿产局. 1993. 新疆维吾尔自治区区域地质志[M]. 北京: 地质出版社,136-169. 新疆维吾尔自治区地质矿产局. 1999. 新疆维吾尔自治区岩石地层[M]. 湖北武汉: 中国地质大学出版社,53-56. 新疆维吾尔自治区区域地层表编写组. 1981. 西北地区区域地层表 新疆维吾尔自治区分册[M]. 北京:地质出版社,16-17. 许汉奎. 1991. 新疆西准噶尔下、中泥盆统界线地层及腕足类[J]. 古生物学报, 30(3): 307-333. 许汉奎,蔡重阳,廖卫华,等. 1990. 西准噶尔洪古勒楞组及泥盆—石炭系界线[J]. 地层学杂志, 14(4): 292-301. 杨式溥. 1999. 遗迹化石的古环境和古地理意义[J]. 古地理学报, 1(1): 7-19. 杨式溥,张建平,杨美芳. 2004. 中国遗迹化石[M]. 北京:科学出版社,23-33. 曾亚参,肖世禄. 1991. 泥盆系[A]. 见:新疆地质矿产局地质矿产研究所等著. 新疆古生界(新疆地层总结之二)下[M]. 新疆乌鲁木齐:新疆人民出版社,11-24. 张善桢,赵修祜,吴秀元. 1980. 湖南双峰湾头测水组植物化石[J]. 古生物学报, 19(3): 220-227. 张梓歆,王宝瑜. 1996. 兴蒙—新疆北部及邻区早石炭世古生物地理区系[J]. 新疆地质, 14(1): 37-47. 赵治信. 2009. 新疆北部石炭系划分: 为庆祝《新疆石油地质》创刊30周年而作[J]. 新疆石油地质, 30(4): 478-482. 赵治信,王成源. 1990. 新疆准噶尔盆地洪古勒楞组的时代[J]. 地层学杂志, 14(2): 146-147. 《中国古生代植物》编写小组. 1974. 中国植物化石(第一册)?中国古生代植物[M]. 北京:科学出版社,17-66. 周守沄. 2000. 新疆石炭纪古地理[J]. 新疆地质, 18(4): 324-329. 朱永峰,徐新. 2006. 新疆塔尔巴哈台山发现早奥陶世蛇绿混杂岩[J]. 岩石学报, 22(12): 2833-2842. 宗普,马学平. 2012. 新疆西准噶尔地区泥盆—石炭系界线附近的石燕贝类腕足动物[J]. 古生物学报, 51(2): 157-175. Bromley R G,Ekdale A A. 1984. Chondrites: A trace fossil indicator of anoxia in sediments[J]. Science, 224: 872-874. Cai C Y,Li X X. 1994. A review of Silurian and Devonian macrofloras in China[J]. Palaeontologia Cathayana, 6: 167-214. Chen J F,Han B F,Ji J Q, et al. 2010. Zircon U-Pb ages and tectonic implications of Paleozoic plutons in northern West Junggar,North Xinjiang,China[J]. Lithos, 115: 137-152. Chen X Q,Yang Z. 2011. Late Devonian rhynchonellids(Brachiopoda)from the Junggar Basin,northwestern Xinjiang[J]. Palaeoworld, 20: 46-60. Chen X Q,Mawson R,Suttner T J, et al. 2009. Late Devonian(latest Frasnian-Famennian)faunas from the‘Hongguleleng Formation' and the F-F boundary in northern Xinjiang,NW China[C]. In: Suttner T J,Hubmann B, Piller W E(eds). Berichte des Institutes für Erdwissenschaften,Karl-Franzens-Universitt Graz,Band 14: Paleozoic Seas Symposium(Abstract volume),18-20. Einor O L. 1996. The Fomer USSR[C]. In: Wagner R H, et al . (eds). The Carboniferous of the World Ⅲ The former USSR,Mongolia,Middle Eastern Platform,Afghanistan & Iran[M]. Madrid: Instituto Tecnológico Geominero de Espaa(ITGE),169-171. Ekdale A A. 1985. Paleoecology of the marine endobenthos[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 50: 63-81. Ekdale A A,Berger W H. 1978,Deep-sea ichnofacies: Modern organism traces on and in pelagic carbonates of the western equatorial pacific[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 23: 263-278. Ekdale A A,Mason T R. 1988. Characteristic trace-fossil associations in oxygen-poor sedimentary environments[J]. Geology, 16: 720-723. Frey R W,Pemberton S G,Saunders T D A. 1990. Ichnofacies and bathymetry: A passive relationship[J]. Journal of Paleontology, 64: 155-158. Han B F,Guo Z J,Zhang Z C, et al. 2010. Age,geochemistry,and tectonic implications of a Late Paleozoic stitching pluton in the North Tian Shan suture zone,western China[J]. Geological Society of America Bulletin, 122: 627-640. Johnny A W,Christopher G M,Gary N L, et al. 2003. A quadrupling of Famennian pelmatozoan diversity: New late Devonian Blastoids and Crinoids from northwest China[J]. Journal of Paleontology, 77: 922-948. Mosseichik Y V,Ruban D A. 2010. Viséan flora from the Moscow Coal Basin(Baltic Plate;European Russia): Local evolution in the context of global tendencies[J]. Palaeogeography,Palaeoclimatology,Palaeocology, 292: 168-183. Rodríguez-Tovar F J,Uchman A,Payros A, et al. 2010. Sea-level dynamics and palaeoecological factors affecting trace fossil distribution in Eocene turbiditic deposits(Gorrondatxe section,N Spain)[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 285: 50-65. Seilacher A. 1962. Paleontological studies on turbidite sedimentation and erosion[J]. The Journal of Geology, 70: 227-234. Seilacher A. 1967. Bathymetry of trace fossils[J]. Marine Geology, 5: 413-428. Uchman A. 1991. Trace fossils from stress environments in Cretaceous-Paleogene flysch of the Polish outer Carpathians[J]. Annales Societatis Geologorum Poloniae, 61: 207-220. Uchman A. 1992. An opportunistic trace fossil assemblage from the flysch of the Inoceramian beds(Campanian-Palaeocene),Bystrica Zone of the Magura Nappe,Carpathians,Poland[J]. Cretaceous Research, 13: 539-547. Uchman A. 2003. Trends in diversity,frequency and complexity of graphoglyptid trace fossils: Evolutionary and palaeoenvironmental aspects[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 192: 123-142. Uchman A. 2007. Deep sea trace fossils from mixed carbonate-siliciclastic flysch of the Monte Antola Formation(Late Campanian-Maastrichtian),North Apennines,Italy[J]. Cretaceous Research, 28: 980-1004. Uchman A. 2009. The Ophiomorpha rudis ichnosubfacies of the Nereites ichnofacies: Characteristics and constraints[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 276: 107-119. Wang Q,Hao S G,Wang D M, et al. 2003. A Late Devonian arborescent lycopsid Sublepidodendron songziense (Sublepidodendraceae)from China,with a review of the genus Sublepidodendron (Nathorst)Hirmer 1927[J]. Review of Palaeobotany and Palynology, 127: 269-305. Wang Y,Xu H H. 2005. Sublepidodendron grabaui comb. nov.,a lycopsid from the Upper Devonian of China[J]. Botanical Journal of the Linnean Society, 149: 299-311. Wetzel A. 1983. Biogenic structures in modern slope to deep-sea sediments in the Sulu Sea Basin(Philippines)[J]. Palaeogeography,Palaeoclimatology,Palaeoecology, 42: 285-304. Wetzel A,Uchman A. 1998. Deep-sea benthic food content recorded by ichnofabrics: A conceptual model based on observations from Paleogene flysch,Carpathians,Poland[J]. Palaios, 13: 533-546. Windley B F,Alexeiev D,Xiao W J, et al. 2007. Tectonic models for accretion of the Central Asian Orogenic Belt[J]. Journal of the Geological Society of London, 164: 31-47. Zhou T F,Yuan F,Fan Y, et al. 2008. Granites in the Saur region of the west Junggar,Xinjiang Province,China: Geochronological and geochemical characteristics and their geodynamic significance[J]. Lithos, 106: 191-206.