Author:
Young Gavin Charles,Lu Jing
Abstract
AbstractMiddle Palaeozoic vertebrate fossil occurrences are summarised for Australia, with reference to faunal connections between Asia and East Gondwana, as first indicated by fish distributions of Lower Devonian fossil sites. Major endemic groups discussed are pituriaspid (Australian) and galeaspid (Asian) agnathans, wuttagoonaspids (Australian) and antarctaspid (Antarctic, Australian, Asian) arthrodires, yunnanolepid and sinolepid antiarchs (South China, Indochina terrane, Australia), and early tetrapodomorphs (South China, Australia). More widespread groups that lived in shallow marine environments (lungfishes, buchanosteid arthrodires, antiarch Bothriolepis) also show species groups shared between South China and East Gondwana. Exchange of continental facies fishes (e.g. tristichopterid tetrapodomorphs) may have been interrupted by marine transgression in the Frasnian, but were restored in the late Famennian with the appearance of Grenfellaspis in eastern Australia, the only sinolepid antiarch known from outside Asia. The hypothesis of Gondwana dispersion and Asian accretion, to explain the collage of geological terranes forming modern east and southeast Asia, implies increasing dissimilarity with increasing age, but the Siluro-Devonian early vertebrate evidence is inconsistent with this. Previous cladistic analysis of Asian terranes predicted galeaspid agnathans on the Indochina terrane, and their subsequent discovery at Ly Hoa, Vietnam, confirms that Indochina and South China had come together across the Song Ma suture by Middle Devonian time.
Publisher
Springer Science and Business Media LLC
Reference157 articles.
1. Agassiz, L. 1844. Monographie des poissons fossiles du vieux grès rouge du système Dévonien (Old Red Sandstone) des Îles Britanniques et de Russie, 171 pp. Neuchâtel: Jent and Gassmann.
2. Ahlberg, P.E., and J.A. Clack. 2006. A firm step from water to land. Nature 440 (7085): 747–749.
3. Ahlberg, P.E., and Z. Johanson. 1997. Second tristichopterid (Sarcopterygii, Osteolepiformes) from the Upper Devonian of Canowindra, New South Wales, Australia, and phylogeny of the Tristichopteridae. Journal of Vertebrate Paleontology 17: 653–673.
4. Ahmad, M., and T.J. Munson (compilers). 2013. Geology and mineral resources of the Northern Territory, Darwin: Northern Territory Geological Survey, Special Publication 5.
5. Ayling, B., J. Huntington, B. Smith, and D. Edwards. 2016. Hyperspectral logging of middle Cambrian marine sediments with hydrocarbon prospectivity: A case study from the southern Georgina Basin, northern Australia. Australian Journal of Earth Sciences 63. https://doi.org/10.1080/08120099.2016.1204625.
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