African Cichlid Lake Radiations Recapitulate Riverine Axial Morphologies Through Repeated Exploration of Morphospace
Bucklow, C. V.; Ribeiro, E. D.; Ronco, F.; Vranken, N.; Oliver, M. K.; Salzburger, W.; Stiassny, M.; Benson, R.; Verd, B.
Show abstract
African cichlids comprise more than 1800 species of freshwater fishes, with remarkable adaptive radiations in Lakes Tanganyika, Malawi, and Victoria that have given rise to extraordinary morphological diversity. However, the evolution of the cichlid axial skeleton has been largely overlooked, despite its high variation and functional significance for locomotion. Here, we present the first macroevolutionary study of axial morphology in African cichlids, based on phylogenetic comparative analyses of 4861 individuals from 583 species. Adaptation to demersal, pelagic, and piscivorous niches has led to the evolution of elongate bodies with high vertebral counts in lacustrine cichlids, emphasising the role of the fusiform body shape in ecological adaptation. However, riverine species occupy a broader axial morphospace than lacustrine species, which is partly explained by a higher stochastic rate of vertebral count evolution in riverine lineages. In addition, the occupied axial morphospace broadly correlates with the estimated age of the lacustrine radiations, suggesting that exploration of axial morphospace is a function of divergence time. However, rates of vertebral count evolution are not the same across the lake radiations. Therefore, accumulated variation in vertebral counts (and more broadly axial morphospace) is not solely a function of divergence time. Finally, we show that the common ancestor of African cichlids possessed a distinctly riverine axial morphology, indicating that the exploration of axial morphospace radiated outward from this ancestral riverine form. These findings highlight the importance of a comparative approach to studying cichlid evolution and underscore the value of African cichlids as a model for investigating the evolutionary and developmental dynamics of the teleostean vertebral column.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Phylogenomics of piranhas and pacus (Serrasalmidae) uncovers how convergent diets obfuscate traditional morphological taxonomy. 97%
- Considering decoupled phenotypic diversification between ontogenetic phases in macroevolution: An example using Triggerfishes (Balistidae) 96%
- Evolution of Large Eyes in Stromboidea (Gastropoda): Impact of Photic Environment and Life History Traits 96%
Similar papers in this journal
- A broadly resolved molecular phylogeny of New Zealand cheilostome bryozoans as a framework for hypotheses of morphological evolution 96%
- A molecular phylogeny of forktail damselflies (genus Ischnura) reveals a dynamic macroevolutionary history of female colour polymorphisms 96%
- Total-evidence phylogenetic analysis resolves the evolutionary timescale of mantis shrimps (Stomatopoda) and provides insights into their molecular and morphological evolutionary rates 96%
Similar papers in this journal
Similar papers in this journal
- Palatal morphology predicts the paleobiology of early salamanders 96%
- Convergent mosaic brain evolution is associated with the evolution of novel electrosensory systems in teleost fishes. 96%
- Myoglobin primary structure reveals multiple convergent transitions to semi-aquatic life in the world smallest mammalian divers 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.