The end-Triassic mass extinction (ETME) was associated with intensified deep-water anoxia in epicontinental seas and mid-depth waters, yet the absolute oxygenation state in the shallow ocean is uncharacterized. Here we report carbonate-associated iodine data from the peritidal Mount Sparagio section (Southern Italy) that documents the ETME (~ 200 Ma) in the western Tethys. We find a sharp drop in carbonate I/(Ca + Mg) ratios across the extinction horizon and persisting into the Early Jurassic. This records local dissolved oxygen and iodate decline in the near-surface ocean of low-latitude Tethys due to the development of depleted oxygen concentrations. Consequently, during the ETME even shallow-water animals, such as the megalodonts seen at...
The cause of the Triassic-Jurassic (Tr-J) boundary biotic crisis, one of the ‘Big Five’ mass extinct...
The end-Triassic extinction coincided with an increase in marine black shale deposition and biomarke...
For this study, we generated thallium (Tl) isotope records from two anoxic basins to track the earli...
The end-Triassic mass extinction (ETME) was associated with intensified deep-water anoxia in epicont...
The end-Triassic biodiversity crisis was one of the most severe mass extinctions in the history of a...
The end-Triassic (∼201 Mya) records one of the five largest mass extinction events of the Phanerozoi...
One of the most severe extinctions of complex marine life in Earth’s history occurred at the end of ...
The role of ocean anoxia as a cause of the end-Triassic marine mass extinction is widely debated. He...
The Triassic/Jurassic boundary section cropping out at Mt Sparagio in north-western Sicily (Italy) c...
The evolution of complex life over the past 600 million years was disrupted by at least five mass ex...
Delayed Earth system recovery following the end-Permian mass extinction is often attributed to sever...
The late Rhaetian–early Hettangian transition is characterised by the emplacement of Central Atlant...
The cause of the Triassic-Jurassic (Tr-J) boundary biotic crisis, one of the ‘Big Five’ mass extinct...
The end-Triassic extinction coincided with an increase in marine black shale deposition and biomarke...
For this study, we generated thallium (Tl) isotope records from two anoxic basins to track the earli...
The end-Triassic mass extinction (ETME) was associated with intensified deep-water anoxia in epicont...
The end-Triassic biodiversity crisis was one of the most severe mass extinctions in the history of a...
The end-Triassic (∼201 Mya) records one of the five largest mass extinction events of the Phanerozoi...
One of the most severe extinctions of complex marine life in Earth’s history occurred at the end of ...
The role of ocean anoxia as a cause of the end-Triassic marine mass extinction is widely debated. He...
The Triassic/Jurassic boundary section cropping out at Mt Sparagio in north-western Sicily (Italy) c...
The evolution of complex life over the past 600 million years was disrupted by at least five mass ex...
Delayed Earth system recovery following the end-Permian mass extinction is often attributed to sever...
The late Rhaetian–early Hettangian transition is characterised by the emplacement of Central Atlant...
The cause of the Triassic-Jurassic (Tr-J) boundary biotic crisis, one of the ‘Big Five’ mass extinct...
The end-Triassic extinction coincided with an increase in marine black shale deposition and biomarke...
For this study, we generated thallium (Tl) isotope records from two anoxic basins to track the earli...