4.5 Article

Rudists (Bivalvia: Hippuritida) from the Lower Cretaceous Khalsi Formation, Ladakh, India, and their palaeogeographic implications

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CRETACEOUS RESEARCH
卷 144, 期 -, 页码 -

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cretres.2022.105455

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Radiolitidae; Polyconitidae; Cretaceous; Ladakh; Khalsi Formation

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Rudist fauna from the Khalsi Formation in southern Ladakh, India is described, including the first record of A. biconvexus and M. rutogensis in the region. The presence of A. gilgitensis in the early Aptian suggests an eastern dispersal pattern. The finding of M. rutogensis fills a geographical gap and supports the hypothesis of the evolution of Plagioptychidae.
Rudist fauna composed of the Radiolitidae and the Polyconitidae is reported from the Aptian-Albian Khalsi Formation, southern Ladakh, India. The rudists are identified as Auroradiolites gilgitensis, A. biconvexus, Magallanesia rutogensis, and Shajia tibetica. Among them, A. biconvexus and M. rutogensis are described first time in Ladakh. Additionally, two radiolitid specimens reported from the Saltoro Formation of the SSZ in northern Ladakh by Upadhyay (2014), are assigned to A. biconvexus, and one single specimen from Saltoro Formation which was assigned to Horiopleura sp. by Upadhyay (2014), is questionably transferred to S. tibetica in this study. The occurrence of A. gilgitensis in the early Aptian of Ladakh provides evidence for the eastern dispersal pattern of A. gilgitensis during early Aptian. The finding of M. rutogensis in Ladakh fills the geographical gap between the first plagioptychid, early Turonian Plagioptychus haueri in the Mediterranean and the previous westernmost record of M. rutogensis in Lhasa Block, and further strengthens the hypothesis that Plagioptychidae was evolved from Magallanesia or related form. The association of A. biconvexus, A. gilgitensis, and M. canaliculata support the hypothesis of southwest Asian-Pacific province for the palaeobiogeographic linkage of Auroradiolites and Horiopleura haydeni-Praecaprotina-Magallanesia. This study provides additional ev-idence in favour of the relatively close geographical connection and tectonic equivalence between the Ladakh and Lhasa blocks during the mid-Cretaceous. Meanwhile, it highlights the need for detailed biostratigraphic studies in other microcontinents along the northern margin of the East Tethys, which may provide critical information for their tectonic and palaeogeographic evolution. (c) 2022 Elsevier Ltd. All rights reserved.

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