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A new palaeontinid (Insecta, Hemiptera, Cicadomorpha) from the Upper Jurassic Tiaojishan Formation of northeastern China and its biogeographic significance

Published online by Cambridge University Press:  11 December 2019

Yanzhe Fu
Affiliation:
State Key Laboratory of Palaeobiology and Stratigraphy, Center for Excellence in Life and Paleoenvironment, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing210008, China University of Chinese Academy of Science, Beijing100049, China
Chenyang Cai
Affiliation:
Key Laboratory of Economic Stratigraphy and Palaeogeography, Center for Excellence in Life and Paleoenvironment, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing210008, China
Diying Huang*
Affiliation:
State Key Laboratory of Palaeobiology and Stratigraphy, Center for Excellence in Life and Paleoenvironment, Nanjing Institute of Geology and Palaeontology, Chinese Academy of Sciences, Nanjing210008, China
*
*Corresponding author

Abstract

Cicadomorpha guancaishanensis new species, of the extinct family Palaeontinidae, is described from the Upper Jurassic Tiaojishan Formation at Guancaishan, Jianping County, Western Liaoning, northeastern China. It represents the first record of Palaeontinidae from the Tiaojishan Formation and highlights the palaeodiversity of the Late Jurassic palaeontinids. Cicadomorpha Martynov, 1926 previously included three species with extremely limited morphological differences from the Karabastau Formation of Kazakhstan, the Glushkovo Formation, and the Ukurei Formation of Chita, Transbaikalia, and Russia, indicating a correlated stratigraphic relationship. This discovery provides new evidence that closure of the Okhotsk Ocean began in the Middle Jurassic. Thus, there is no distinct geographical barrier between the southern and northern areas of Mongolia-Okhotsk Ocean in the Late Jurassic.

UUID: http://zoobank.org/64531de4-070c-43d4-ae01-106d4338027b.

Type
Articles
Copyright
Copyright © 2019, The Paleontological Society

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References

Becker-Migdisova, E., 1949, Mesozoic Homoptera of central Asia: Trudy Paleontologicheskogo Instituta, v. 22, p. 168. [in Russian]Google Scholar
Bi, S., Wang, Y., Guan, J., Sheng, X., and Meng, J., 2014, Three new Jurassic euharamiyidan species reinforce early divergence of mammals: Nature, v. 514, p. 579584, doi:10.1038/nature13718.CrossRefGoogle ScholarPubMed
Bourgoin, T., Wang, R., Asche, M., Hoch, H., Soulier-Perkins, A., Stroinski, A., Yap, S., and Szwedo, J., 2015, From micropterism to hyperpterism: recognition strategy and standardized homology-driven terminology of the forewing venation patterns in planthoppers (Hemiptera: Fulgoromorpha): Zoomorphology, v. 134, p. 6377, doi:10.1007/s00435-014-0243-6.CrossRefGoogle Scholar
Cai, C., and Huang, D., 2016, Omma daxishanense sp. nov., a fossil representative of an extant Australian endemic genus recorded from the Late Jurassic of China (Coleoptera: Ommatidae): Alcheringa, v. 41, p. 277283, doi:10.1080/03115518.2016.1225251.CrossRefGoogle Scholar
Carpenter, F.M., 1992, Superclass Hexapoda, in Kaesler, R.L., ed., Treatise on Invertebrate Paleontology, Part R, Arthropoda 4: Boulder, Colorado, and Lawrence, Kansas, Geological Society of America (and University of Kansas Press), 655 p.Google Scholar
Chen, J., Zhang, H., Wang, B., Zheng, X., and Wang, X., 2016, New Jurassic Sinopalaeocossus and related genera with notes on their evolutionary implications (Hemiptera, Palaeontinidae): Insect Systematics and Evolution, v. 47, p. 113129, doi:10.1163/1876312X-47022136.CrossRefGoogle Scholar
Chen, J., Beattie, R., Wang, B., Jiang, H., Zheng, Y., and Zhang, H., 2019, The first palaeontinid from the Late Jurassic of Australia (Hemiptera, Cicadomorpha, Palaeontinidae): Alcheringa, v. 43, p. 449454, doi:10.1080/03115518.2019.1587787.CrossRefGoogle Scholar
Cheng, X., Wang, X., Jiang, S., and Kellner, A.W., 2012, A new scaphognathid pterosaur from western Liaoning, China: Historical Biology, v. 24, p. 101111, doi:10.1080/08912963.2011.635423.CrossRefGoogle Scholar
Deng, S., Yao, Y., Ye, D., Chen, P., Jin, F., Zhang, Y., , K., Zhao, Y., Yuan, X., and Zhang, S., 2003, The Jurassic System of North China (I): A Stratigraphic Overview: Beijing, Petroleum Industry Press, 399 p. [in Chinese with English abstract]Google Scholar
Deng, S., Lu, Y., Zhao, Y., Fan, R., Wang, Y., Yang, X., Li, X., and Sun, B., 2017, The Jurassic palaeoclimate regionalization and evolution of China: Earth Science Frontiers, v. 24, p. 106142, doi:10.13745/j.esf.2017.01.007. [in Chinese with English abstract]Google Scholar
Duan, Y., Zhen, S., Hu, D., Zhang, L., and Wang, W., 2009, Preliminary report on Middle Jurassic strata and fossils from Linglongta area of Jianchang, Liaoning: Global Geology, v. 28, p. 143147. [in Chinese with English abstract]Google Scholar
Enkin, R.J., Yang, Z., Chen, Y., and Courtillot, V., 1992, Paleomagnetic constraints on the geodynamic history of the major blocks of China from the Permian to the present: Journal of Geophysical Research Atmospheres, v. 971, p. 1395313989, doi:10.1029/92JB00648.CrossRefGoogle Scholar
Evans, J.W., 1946, A natural classification of leaf-hoppers (Homoptera, Jassoidea), part 2: Aetalionidae, Hylicidae, Eurymelidae: Transactions of the Royal Entomological Society of London, v. 97, p. 3954.CrossRefGoogle Scholar
Fang, Y., Wu, C., Guo, Z., Hou, K., Dong, L., Wang, L., and Li, L., 2015, Provenance of the southern Junggar Basin in the Jurassic: Evidence from detrital zircon geochronology and depositional environments: Sedimentary Geology, v. 315, p. 4763, doi:10.1016/j.sedgeo.2014.10.014.CrossRefGoogle Scholar
Gao, K., and Shubin, N.H., 2012, Late Jurassic salamandroid from western Liaoning, China: Proceedings of the National Academy of Sciences, v. 109, p. 57675772, doi:10.1073/pnas.1009828109.CrossRefGoogle ScholarPubMed
Gilder, S., and Courtillot, V., 1997, Timing of the North-South China collision from new middle to late Mesozoic paleomagnetic data from the North China Block: Journal of Geophysical Research, v. 102, p. 1771317727.CrossRefGoogle Scholar
Godefroit, P., Demuynck, H., Dyke, G., Hu, D., Escuillié, F., and Claey, P., 2013a, Reduced plumage and flight ability of a new paravian theropod from China: Nature Communications, v. 4, p. 1394, doi:10.1038/ncomms2389.CrossRefGoogle Scholar
Godefroit, P., Cau, A., Hu, D., Escuillié, F., Wu, W., and Dyke, G., 2013b, A Jurassic avialan dinosaur from China resolves the early phylogenetic history of birds: Nature, v. 498, p. 359362, doi:10.1038/nature12168.CrossRefGoogle Scholar
Handlirsch, B.A., 1906–1908, Die Fossilen Insekten und die Phylogenie der Rezenten Formen: Ein Handbuch für Paläontologen und Zoologen: Leipzig, Germany, Engelmann, 1430 pp.Google Scholar
Hong, Y., 1982, Mesozoic Fossil Insects of the Jiuquan Basin in Gansu Province: Beijing, Geological Publishing House, 223 p. [in Chinese]Google Scholar
Hu, D., Lianhai, H., Zhang, L., and Xu, X., 2009, A pre-Archaeopteryx troodontid theropod from China with long feathers on the metatarsus: Nature, v. 461, p. 640643, doi:10.1038/nature08322.CrossRefGoogle ScholarPubMed
Huang, D., 2015, Yanliao biota and Yanshan movement: Acta Palaeontologica Sinica, v. 54, p. 501546. [in Chinese with English abstract]Google Scholar
Huang, D., ed., 2016, The Daohugou Biota: Shanghai, Shanghai Scientific and Technical Publishers, 332 pp. [in Chinese]Google Scholar
Huang, D., 2019, Jurassic integrative stratigraphy and timescale of China: Science China Earth Science, v. 62, p. 223255, doi:10.1007/s11430-017-9268-7.CrossRefGoogle Scholar
Huang, D., Cai, C., Fu, Y., and Su, Y., 2018a, The Middle-Late Jurassic Yanliao entomofauna: Palaeoentomology, v. 1, p. 331, doi:10.11646/palaeoentomology.1.1.2.CrossRefGoogle Scholar
Huang, D., Cai, C., and Nel, A., 2018b, A new damsel-dragonfly of the small family Selenothemistidae from the Late Jurassic of China (Odonata: Isophlebioptera): Journal of Paleontology, v. 92, p. 15, doi:10.1016/j.cretres.2011.11.019.CrossRefGoogle Scholar
Jia, J., and Gao, K., 2016, A new basal salamandroid (Amphibia, Urodela) from the Late Jurassic of Qinglong, Hebei Province, China: PLoS ONE, v. 11, p. e0153834, doi:10.1371.journal.pone.0153834.CrossRefGoogle ScholarPubMed
Jia, J., and Gao, K., 2019, A new stem hynobiid salamander (Urodela, Cryptobranchoidea) from the Upper Jurassic (Oxfordian) of Liaoning Province, China: Journal of Vertebrate Paleontology, v. 39, p. e1588285, doi:10.1080/02724634.2019.1588285.CrossRefGoogle Scholar
Kirichkova, A.I., and Doludenko, M.P., 1996, New data on phytostratigraphy of the Jurassic deposits of Kazakhstan: Stratigraphy and Geological Correlation, v. 4, p. 3552.Google Scholar
Kravchinsky, V.A., Cogne, J.P., Harbert, W.P., and Kuzmin, M.I., 2002, Evolution of the Mongol-Okhotsk Ocean as constrained by new palaeomagnetic data from the Mongol-Okhotsk suture zone, Siberia: Geophysical Journal International, v. 148, p. 3457, doi:10.1046/j.1365-246x.2002.01557.x.CrossRefGoogle Scholar
Li, Y., Chen, J., and Wang, B., 2019, New Cretaceous palaeontinids (Insecta, Hemiptera) from northeast China: Cretaceous Research, v. 95, p. 130137.CrossRefGoogle Scholar
, J., 2009, A new non-pterodactyloid pterosaur from Qinglong County, Hebei Province of China: Acta Geologica Sinica, v. 83, p. 189199, doi:10.1111/j.1755-6724.2009.00062.x.CrossRefGoogle Scholar
, J., Unwin, D.M., Jin, X., Liu, Y., and Ji, Q., 2010, Evidence for modular evolution in a long-tailed pterosaur with a pterodactyloid skull: Proceedings of the Royal Society B, Biological Sciences, v. 277, p. 383389, doi:10.1098/rspb.2009.1603.CrossRefGoogle Scholar
, J., Unwin, D.M., Deeming, D.C., Jin, X., Liu, Y., and Ji, Q., 2011, An egg-adult association, gender, and reproduction in pterosaurs: Science, v. 331, p. 321324, doi:10.1126/science.1197323.CrossRefGoogle ScholarPubMed
Luo, Z., Yuan, C., Meng, Q., and Ji, Q., 2011, A Jurassic eutherian mammal and divergence of marsupials and placentals: Nature, v. 476, p. 442445, doi:10.1038/nature10291.CrossRefGoogle ScholarPubMed
Martynov, A.V., 1926, To the knowledge of fossil insects from the Jurassic beds in Turkestan: Izvestiia Akademii nauk SSSR, v. 20, p. 13491366.Google Scholar
Martynov, A.V., 1937, Liassic insects from Shurab and Kizil-Kiya: Trudy Paleontologicheskogo Instituta, v. 7, p. 1232. [in Russian with English summary]Google Scholar
Meng, J., Hu, Y., Wang, Y., Wang, X., and Li, C., 2006, A Mesozoic gliding mammal from northeastern China: Nature, v. 444, p. 889893, doi:10.1038/nature05234.CrossRefGoogle ScholarPubMed
Menon, F., Heads, S.W., and Martill, D.M., 2005, New Palaeontinidae (Insecta: Cicadomorpha) from the Lower Cretaceous Crato Formation of Brazil: Cretaceous Research, v. 26, p. 837844, doi:10.1016/j.cretres.2005.05.005.CrossRefGoogle Scholar
Metelkin, D.V., Gordienko, I.V., and Klimuk, V.S, 2007, Paleomagnetism of Upper Jurassic basalts from Transbaikalia: New data on the time of closure of the Mongol-Okhotsk Ocean and Mesozoic intraplate tectonics of Central Asia: Russian Geology & Geophysics, v. 48, p. 825834, doi:10.1016/j.rgg.2007.09.004.CrossRefGoogle Scholar
Nam, K.S., Wang, Y., Ren, D., Kim, J.H., and Szwedo, J., 2017, An extraordinary palaeontinid from the Triassic of Korea and its significance: Scientific Reports, v. 7, p. 40691, doi:10.1038/srep40691.CrossRefGoogle ScholarPubMed
Nel, A., Prokop, J., Nel, P., Grandcolas, P., Huang, D., Roques, P., Guilbert, E., Dostál, O., and Szwedo, J., 2012, Traits and evolution of wing venation pattern in paraneopteran insects: Journal of Morphology, v. 273, p. 480506, doi:10.1002/jmor.11036.CrossRefGoogle ScholarPubMed
Ponomarenko, A.G., Sukatsheva, I.D., and Vasilenko, D.V., 2009, Some characteristics of the Trichoptera distribution in the Mesozoic of Eurasia (Insecta: Trichoptera): Paleontological Journal, v. 43, p. 282295, doi:10.1134/S003103010903006X.CrossRefGoogle Scholar
Rasnitsyn, A.P., and Quicke, D.L.J., 2002, History of Insects: Dordrecht, The Netherlands, Kluwer Academic Publisher, 513 p.CrossRefGoogle Scholar
Riek, E.F., 1976, A new collection of insects from the Upper Triassic of South Africa: Annals of the Natal Museum, v. 22, p. 791820.Google Scholar
Scotese, C.R., 2014, Atlas of Jurassic Paleogeographic Maps, PALEOMAP Atlas for ArcGIS, Volume 3, The Jurassic and Triassic: Evanston, Illinois, Mollweide Projection, PALEOMAP Project, maps 32–42, doi:10.13140/2.1.4850.4321.Google Scholar
Shcherbakov, D.E., 1988, New cicadas (Cicadina) from the late Mesozoic of Transbaikalia: Paleontological Journal, v. 4, p. 5566.Google Scholar
Shcherbakov, D.E., and Popov, Y.A., 2002, Superorder Cimicidea Laicharting, 1781 order Hemiptera Linné, 1758: The bugs, cicadas, plantlice, scale insects, etc., in Rasnitsyn, A.P., and Quicke, D.L.J., eds., History of Insects: Dordrecht, The Netherlands, Kluwer Academic Publisher, p. 152155.Google Scholar
Sinitsa, S.M., 1993, Jurassic and Lower Cretaceous of Central Mongolia (ostracodes, stratigraphy, and paleoreconstruction): Paleontological Journal, v. 42, p. 1240.Google Scholar
Sinitsa, S.M., 2016, Jurassic dinosaurs of Transbaikalia and prospects of searching for them in Mongolia: Paleontological Journal, v. 50, p. 14011411, doi:10.1134/S0031030116120170.CrossRefGoogle Scholar
Sinitshenkova, N.D., 2005, The oldest known record of an imago of Nemouridae (Insecta: Perlida = Plecoptera) in the late Mesozoic of eastern Transbaikalia: Paleontological Journal, v. 39, p. 3840.Google Scholar
Szwedo, J., 2018, The unity, diversity and conformity of bugs (Hemiptera) through time: Earth and Environmental Science Transactions of the Royal Society of Edinburgh, v. 107, p. 109128, doi:10.1017/S175569101700038X.CrossRefGoogle Scholar
Tillyard, R.J., 1916, Mesozoic and Tertiary insects of Queensland and New South Wales: Queensland Geological Survey, Publication 253, p. 11–47.Google Scholar
Tillyard, R.J., 1921, Mesozoic insects of Queensland, no. 8, Hemiptera-Homoptera: Proceedings of the Linnean Society of New South Wales, v. 46, p. 270284.CrossRefGoogle Scholar
Tomurtogoo, T., Windley, B.F., Kroner, A., Badarch, G., and Liu, D.Y., 2005, Zircon age and occurrence of the Adaatsag ophiolite and Muron shear zone, Central Mongolia: Constraints on the evolution of the Mongol-Okhotsk ocean, suture and orogeny: Journal of the Geological Society, London, v. 162, p. 125134, doi:10.1144/0016-764903-146.CrossRefGoogle Scholar
Wang, B., Zhang, H., and Fang, Y., 2006, Some Jurassic Palaeontinidae (Insecta, Hemiptera) from Daohugou, Inner Mongolia, China: Palaeoworld, v. 15, p. 115125, doi:10.1016/j.palwor.2006.03.006.CrossRefGoogle Scholar
Wang, B., Zhang, H., Fang, Y., Wang, D., and Ji, S., 2008, New data on Cretaceous Palaeontinidae (Insecta: Hemiptera) from China: Cretaceous Research, v. 29, p. 551560, doi:10.1016/j.cretres.2008.01.007.CrossRefGoogle Scholar
Wang, B., Zhang, H., and Szwedo, J., 2009, Jurassic Palaeontinidae from China and the higher systematics of Palaeontinoidea (Insecta: Hemiptera: Cicadomorpha): Palaeontology, v. 52, p. 5364, doi:10.1111/j.1475-4983.2008.00826.x.CrossRefGoogle Scholar
Wang, X., Kellner, A.W., Jiang, S., and Meng, X., 2009, An unusual long-tailed pterosaur with elongated neck from western Liaoning of China: Anais da Academia Brasileira de Ciências, v. 81, p. 793812, doi:10.1590/S0001-37652009000400016.CrossRefGoogle ScholarPubMed
Wang, X., Kellner, A.W., Jiang, S., Cheng, X., Meng, X., and Rodrigues, T., 2010, New long-tailed pterosaurs (Wukongopteridae) from western Liaoning, China: Anais da Academia Brasileira de Ciências, v. 82, p. 10451062, doi:10.1590/S0001-37652010000400024.CrossRefGoogle ScholarPubMed
Wang, Y., and Ren, D., 2009, New fossil palaeontinids from the Middle Jurassic of Daohugou, Inner Mongolia, China (Insecta, Hemiptera): Acta Geologica Sinica, v. 83, p. 3338, doi:10.1111/j.1755-6724.2009.00004.x.CrossRefGoogle Scholar
Wang, Y., Ren, D., and Shih, C., 2007, New discovery of palaeontinid fossils from the Middle Jurassic in Daohugou, Inner Mongolia (Homoptera, Palaeontinidae): Science in China, ser. D, Earth Sciences, v. 50, p. 481486, doi:10.1007/s11430-007-0029-5.CrossRefGoogle Scholar
Wang, Y., Dong, L., and Evans, S., 2015, Polydactyly and other limb abnormalities in the Jurassic salamander Chunerpeton from China: Palaeobiodiversity and Palaeoenvironments, v. 96, p. 4959, doi:10.1007/s12549-015-0219-7.CrossRefGoogle Scholar
Xu, X., You, H., Du, K., and Han, F., 2011, An Archaeopteryx-like theropod from China and the origin of Avialae: Nature, v. 475, p. 465470, doi:10.1038/nature10288.CrossRefGoogle ScholarPubMed
Yang, Z., Jiang, B., McNamara, M.E., Kearns, S.L., Pittman, M., Kaye, T.G., Orr, P.J., Xu, X., and Benton, M.J., 2019, Pterosaur integumentary structures with complex feather-like branching: Nature Ecology & Evolution, v. 3, p. 2430, doi:10.1038/s41559-018-0728-7.CrossRefGoogle ScholarPubMed
Yuan, C., Ji, Q., Meng, Q., Tabrum, A.R., and Luo, Z., 2013, Earliest evolution of multituberculate mammals revealed by a new Jurassic fossil: Science, v. 341, p. 779783, doi:10.1126/science.1237970.CrossRefGoogle ScholarPubMed
Zhang, J., 2015, Archisargoid flies (Diptera, Brachycera, Archisargidae and Kovalevisargidae) from the Jurassic Daohugou biota of China, and the related biostratigraphical correlation and geological age: Journal of Systematic Palaeontology, v. 13, p. 857881, doi:10.1080/14772019.2014.960902.CrossRefGoogle Scholar
Zhao, X., Coe, R.S., Zhou, Y., Wu, H., and Wang, J., 1990, New paleomagnetic results from northern China: Collision and suturing with Siberia and Kazakhstan: Tectonophysics, v. 184, p. 4381.Google Scholar
Zhou, C., Wu, S., Martin, T., and Luo, Z., 2013, A Jurassic mammaliaform and the earliest mammalian evolutionary adaptations: Nature, v. 500, p. 163167, doi:10.1038/nature12429.CrossRefGoogle ScholarPubMed
Zonenshain, L.P., Kuzmin, M.I., and Natapov, L.M., 1990, Geology of the USSR: A plate-tectonic synthesis: American Geophysical Union, v. 21, p. 97108.Google Scholar
Zorin, Y.A., 1999, Geodynamics of the western part of the Mongolia-Okhotsk collisional belt, Trans-Baikal region (Russia) and Mongolia: Tectonophysics, v. 306, p. 3356.CrossRefGoogle Scholar