The first appearance of skeletal metazoans in the late Ediacaran (~550 million years ago; Ma) has been linked to the widespread development of oxygenated oceanic conditions, but a precise spatial and temporal reconstruction of their evolution has not been resolved. Here we consider the evolution of ocean chemistry from ~550 to ~541 Ma across shelf-to-basin transects in the Zaris and Witputs Sub-Basins of the Nama Group, Namibia. New carbon isotope data capture the final stages of the Shuram/Wonoka deep negative C-isotope excursion, and these are complemented with a reconstruction of water column redox dynamics utilising Fe-S-C systematics and the distribution of skeletal and soft-bodied metazoans. Combined, these inter-basinal datasets prov...
One of the key objectives of Deep Sea Drilling Project (DSDP) Leg 75 was to shed light on the underl...
The sudden appearance of biomineralized metazoans in limestone facies of the Pockenbank Member (Nami...
The Ediacaran-Cambrian transition is marked by the diversification of metazoans in the marine realm....
The first appearance of skeletal metazoans in the late Ediacaran (~550 million years ago; Ma) has be...
The late Ediacaran witnessed an increase in metazoan diversity and ecological complexity, marking th...
Anoxic and iron-rich oceanic conditions prevailed throughout most of the Archean and Proterozoic (40...
The Ediacaran oceanic redox landscape was heterogeneous, where many basins had a shallow and highly ...
The oceans at the start of the Neoproterozoic Era (1,000-541 million years ago, Ma) were dominantly ...
The sudden appearance of biomineralized metazoans in limestone facies of the Pockenbank Member (Nami...
The evolution of the Metazoa is among the greatest success stories in Earth history. From modest or...
High-resolution paired carbon (δ^(13)C_(carb) and δ^(13)C_(org)) and sulfur (δ^(34)S_(SO4) and δ^(34...
High-resolution δ^(13)C data have been collected from shallow marine carbonates of the Witvlei and ...
International audienceThe Ediacaran-Cambrian transition is marked by the diversification of metazoan...
The Ediacaran Period (∼635 to 541 Ma) witnessed the early diversification and radiation of metazoans...
One of the key objectives of Deep Sea Drilling Project (DSDP) Leg 75 was to shed light on the underl...
The sudden appearance of biomineralized metazoans in limestone facies of the Pockenbank Member (Nami...
The Ediacaran-Cambrian transition is marked by the diversification of metazoans in the marine realm....
The first appearance of skeletal metazoans in the late Ediacaran (~550 million years ago; Ma) has be...
The late Ediacaran witnessed an increase in metazoan diversity and ecological complexity, marking th...
Anoxic and iron-rich oceanic conditions prevailed throughout most of the Archean and Proterozoic (40...
The Ediacaran oceanic redox landscape was heterogeneous, where many basins had a shallow and highly ...
The oceans at the start of the Neoproterozoic Era (1,000-541 million years ago, Ma) were dominantly ...
The sudden appearance of biomineralized metazoans in limestone facies of the Pockenbank Member (Nami...
The evolution of the Metazoa is among the greatest success stories in Earth history. From modest or...
High-resolution paired carbon (δ^(13)C_(carb) and δ^(13)C_(org)) and sulfur (δ^(34)S_(SO4) and δ^(34...
High-resolution δ^(13)C data have been collected from shallow marine carbonates of the Witvlei and ...
International audienceThe Ediacaran-Cambrian transition is marked by the diversification of metazoan...
The Ediacaran Period (∼635 to 541 Ma) witnessed the early diversification and radiation of metazoans...
One of the key objectives of Deep Sea Drilling Project (DSDP) Leg 75 was to shed light on the underl...
The sudden appearance of biomineralized metazoans in limestone facies of the Pockenbank Member (Nami...
The Ediacaran-Cambrian transition is marked by the diversification of metazoans in the marine realm....