early cretaceous
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2022 ◽  
Vol 5 (1) ◽  
Author(s):  
CHONG DONG ◽  
GONG-LE SHI ◽  
ZI-XI WANG ◽  
DI-YING HUANG

Well-preserved coprolites (fossil faecal pellets) were found from lignite seams of the Lower Cretaceous Huolinhe Formation at the Huolinhe Basin in eastern Inner Mongolia, Northeast China. These coprolites provide a combination of following features: oval to cylindrical shaped with six longitudinal ridges, hexagonal to elliptical cross-sections, and one blunt end and the other pointed end. According to these distinct features and their size range, the producers of these coprolites are attributed to termites. Termites were estimated to have originated in the earliest Cretaceous with an evolutionary radiation in the Early Cretaceous. The presence of wood debris in the coprolites indicate that the Early Cretaceous termites from the Huolinhe Basin had wood-feeding habits; and anatomical features displaying on the wood debris further suggest their feeding preference was coniferous wood. Besides, the results of a k-means clustering analysis performed for these coprolites indicate that three clusters with different proportion were present, suggesting the division of labor in termites’ sociality existed as early as the Early Cretaceous.


2022 ◽  
Author(s):  
Fabiany Herrera ◽  
Weston L. Testo ◽  
Ashley R. Field ◽  
Elizabeth G. Clark ◽  
Patrick S. Herendeen ◽  
...  
Keyword(s):  

2022 ◽  
Vol 9 ◽  
Author(s):  
Xutong Guan ◽  
Chaodong Wu ◽  
Xuecai Zhang ◽  
Weiwei Jia ◽  
Wei Zhang

Sedimentary investigations, petrography, heavy mineral and conglomerate component analyses, and detrital zircon U-Pb geochronology were conducted to reconstruct the sedimentary and source-to-sink evolution of the Southern Junggar Basin, an intracontinental basin in the late Mesozoic. A paludal deltaic environment evolved into a fluvial environment, and abruptly prograded into alluvial fan and aeolian environments in the Late Jurassic, which was replaced by fan deltaic and lacustrine environments in the Early Cretaceous. Three source-to-sink systems were identified, according to different source-to-sink system features. In the northern piedmont of the Tianshan Orogenic Belt, the North Tianshan Orogenic Belt mainly provided sediments in the Late Jurassic. The North Tianshan and Central Tianshan Orogenic Belt both supplied sediments in the Early Cretaceous. In the northern piedmont of the Bogda Orogenic Belt, the Bogda Orogenic Belt was constantly the primary provenance, and the Tianshan Orogenic Belt also provided sediments. Sediment recycling occurred in the basin margin in the Late Jurassic and more metamorphic rocks were denudated in the Early Cretaceous. The source-to-sink system shrank in the Late Jurassic and expanded in the Early Cretaceous. This source-to-sink evolution and the conglomerates in the Kalazha Formation with seismite structures responded to the aridification in the Late Jurassic, the uplift of the Bogda and Tianshan Orogenic Belts in the Late Jurassic, and the exhumation of the Bogda and Tianshan Orogenic Belts in the Early Cretaceous.


2022 ◽  
Vol 586 ◽  
pp. 110784
Author(s):  
Dawei Qiao ◽  
Nan Peng ◽  
Hongwei Kuang ◽  
Yongqing Liu ◽  
Yanxue Liu ◽  
...  

2022 ◽  
Vol 129 ◽  
pp. 105017
Author(s):  
Andrea De Sosa Tomas ◽  
Carles Martín-Closas ◽  
Patricia Vallati ◽  
J. Marcelo Krause
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