Adaptive radiation in the fossil record: a case study among J urassic ammonoids
Pascal Neige, Guillaume Dera, Jean‐Louis Dommergues
Abstract
Open-access reader
Pascal Neige, Guillaume Dera, Jean‐Louis Dommergues
Abstract
Open-access reader
Abstract Evolutionary radiations have been extensively studied especially in the fossil record and in the context of postcrisis recoveries. The concept of adaptive radiation that emerges from this very broad topic explicitly involves the effect of adaptation driven by ecological opportunity and is considered to be of the foremost importance. It is essential to be able to detect adaptive radiation because it points up factors that predispose a clade to radiate. Adaptive radiation has received much attention in recent decades based mostly on studies dealing with recent clades, but data from the fossil record are still scarce. This study begins to fill this gap with the example ofLowerJurassic ammonoids (throughc. 8 Myr of history). A survey of several clades, using both taxonomic and disparity‐based approaches, shows that they diversified successively through time, but not systematically, in terms of species numbers and morphological variety. Some clades seem to have exhibited adaptive radiation and to have become rapidly extinct. One clade (which engendered nearly all post–LowerJurassic ammonoids) has a fossil record that begins with low diversity and disparity but is superseded by a sustained radiation pattern. The results are discussed in the light of theModernSynthesis and its continuation into anExtendedEvolutionarySynthesis.
OpenAlex reports 21 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract Evolutionary radiations have been extensively studied especially in the fossil record and in the context of postcrisis recoveries. The concept of adaptive radiation that emerges from this very broad topic explicitly involves the effect of adaptation driven by ecological opportunity and is considered to be of the foremost importance. It is essential to be able to detect adaptive radiation because it points up factors that predispose a clade to radiate. Adaptive radiation has received much attention in recent decades based mostly on studies dealing with recent clades, but data from the fossil record are still scarce. This study begins to fill this gap with the example ofLowerJurassic ammonoids (throughc. 8 Myr of history). A survey of several clades, using both taxonomic and disparity‐based approaches, shows that they diversified successively through time, but not systematically, in terms of species numbers and morphological variety. Some clades seem to have exhibited adaptive radiation and to have become rapidly extinct. One clade (which engendered nearly all post–LowerJurassic ammonoids) has a fossil record that begins with low diversity and disparity but is superseded by a sustained radiation pattern. The results are discussed in the light of theModernSynthesis and its continuation into anExtendedEvolutionarySynthesis.
Key concepts: Adaptive radiation, Clade, Fossil Record, Context (archaeology), Paleontology, Extinction (optical mineralogy), Adaptation (eye), Biology