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Olivier Rieppel

Publications and source records attributed to Olivier Rieppel.

6 recordsLinked to original sources

'Type' in morphology and phylogeny.

Comparative morphologists, developmental biologists, as well as paleontologists, recognize the existence of 'types,' or 'Baupläne,' in nature, marked out by a certain 'sameness' of structure that prevails through all variation in shape and function. The 'sameness' that marks out 'types' is one of structural correspondence (topology and connectivity), which is believed to be causally rooted in ontogeny (developmental constraints). In an evolutionary context, the structural relations that mark out 'types' are explained as relations of homology. The use of concepts such as 'type' or 'Bauplan' has been criticized from a 'populational thinking' point of view as being incompatible with current evolutionary theory. The present article explores the contrasting viewpoints, and concludes that current evolutionary theory can accommodate the concept of a 'type' in the sense of a 'homeostatic property cluster natural kind.' The 'homeostatic property cluster natural kind' is a nonessentialistic concept that allows the kind to be historically delimited.

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Modules, kinds, and homology.

Developmental modules are best conceptualized as homeostatic property cluster natural kinds. As is true in other fields of biology, an individual may instantiate properties of various natural kinds. Through their dissociability, developmental modules can be recruited to function as evolutionary modules. The proper analogy to developmental modules, atoms, or biological species depends on the scope over which specific developmental modules allow generalizations. The nature of the relationship between developmental modules, evolutionary modules, and taxic (phylogenetic) homology are explored. Similarity of gene expression patterns and developmental pathways as captured by biological homology may support hypotheses of taxic homology, but not the other way around.

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A Triassic aquatic protorosaur with an extremely long neck.

By Middle Triassic time, a number of reptile lineages had diversified in shallow epicontinental seas and intraplatform basins along the margins of parts of Pangea, including the giraffe-necked protorosaurid reptile Tanystropheus from the Western Tethys (Europe and the Middle East), which grew to approximately 5 to 6 m long. Here we report another long-necked fossil, Dinocephalosaurus, from southwestern China, recently collected in Middle Triassic marine deposits approximately 230 million years old. This taxon represents unambiguous evidence for a fully aquatic protorosaur. Its extremely elongated neck is explained as an adaptation for aquatic life, perhaps for an increase in feeding efficiency.

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