The Jehol Biota, an Early Cretaceous terrestrial Lagerstätte: new discoveries and implications
Биота Джехоль — наземный лагерштетт раннего мела: новые открытия и их значение
2014-09-06
SCID: 54.1/qmqech38
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Early CretaceousJehol Biotapaleoecology and taphonomypaleogeographic and paleoenvironmental reconstructionterrestrial Lagerstätte
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Abstract (AI)
Abstract The study of the Early Cretaceous terrestrial Jehol Biota, which provides a rare window for reconstruction of a Lower Cretaceous terrestrial ecosystem, is reviewed with a focus on some of the latest progress. A newly proposed definition of the biota based on paleoecology and taphonomy is accepted. Although the Jehol fossils are mainly preserved in two types of sedimentary rocks, there are various types of preservation with a complex mechanism that remains to be understood. New discoveries of significant taxa from the Jehol Biota, with an updated introduction of its diversity, confirm that the Jehol Biota represents one of the most diversified biotas of the Mesozoic. The evolutionary significance of major biological groups (e.g. dinosaurs, birds, mammals, pterosaurs, insects, and plants) is discussed mainly in the light of recent discoveries, and some of the most remarkable aspects of the biota are highlighted. The global and local geological, paleogeographic, and paleoenvironmental background of the Jehol Biota have contributed to the unique composition, evolution, and preservation of the biota, demonstrating widespread faunal exchanges between Asia and other continents caused by the presence of the Eurasia–North American continental mass and its link to South America, and confirming northeastern China as the origin and diversification center for a variety of Cretaceous biological groups. Although some progress has been made on the reconstruction of the paleotemperature at the time of the Jehol Biota, much more work is needed to confirm a possible link between the remarkable diversity of the biota and the cold intervals during the Early Cretaceous. Finally, future directions for the study of the Jehol Biota are proposed that highlight the great potential of more comprehensive and multidisciplinary studies to further our understanding of the biological and geological implications of the Jehol Lagerstätte.
Key Findings
1
A possible relationship between Jehol diversity and Early Cretaceous cold intervals remains unresolved, requiring further paleotemperature research and multidisciplinary investigation.
2
Newly discovered taxa confirm that the Jehol Biota is among the most diverse Mesozoic biotas, encompassing major evolutionary evidence across dinosaurs, birds, mammals, pterosaurs, insects, and plants.
3
Regional geological, paleogeographic, and paleoenvironmental conditions shaped the Jehol Biota’s distinctive composition, evolution, and exceptional preservation.
4
The Jehol Biota is defined using paleoecological and taphonomic criteria, although its complex preservation mechanisms remain incompletely understood.
5
The biota records widespread faunal exchange between Asia and other continents and supports northeastern China as an origin and diversification center for multiple Cretaceous biological groups.
Research Object
The Early Cretaceous terrestrial Jehol Biota
Research Subject
Its diversity, evolution, paleoecology, taphonomy, geological and paleoenvironmental context, and preservation
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2014-09-06
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