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  3. Evolutionary transitions to cooperative societies in fishes revisited

Evolutionary transitions to cooperative societies in fishes revisited

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DOI
10.7892/boris.124591
Publisher DOI
10.1111/eth.12813
Abstract
Unravelling the evolution of complex social organization in animals is an important aim, not least because it helps to understand the evolutionary roots of human sociality. Recent advances in comparative methods allow to approach this question in a phylogenetic context. The validity of such comparative approaches depends strongly on the quality of information regarding the behaviour, sociality, and reproduction of animals in natural systems, and on the quality of the phylogenetic reconstruction. Applying a novel comparative approach, a recent study of Dey et al. (2017, Nature Ecology & Evolution, 1, 137) concluded that evolutionary transitions to cooperative breeding in cichlid fishes were not associated with the social mating pattern. Here we argue that this result was adversely affected by equivocal classifications of mating patterns, and inadequate phylogenetic data. In order to illustrate the impact of the mating system misclassifications, we scored mating patterns as reported in the original literature and re‐analysed the dataset based on Dey et al.’s tree topology. The result suggests that the mating system does in fact significantly explain the evolutionary transition to cooperative breeding in lamprologine cichlids, but we submit that a reliable conclusion cannot be reached before improving the behavioural information and the underlying phylogenetic reconstruction. The problems identified in this case study are not unique and we urge caution in the interpretation of results from comparative phylogenetic studies in general. We do agree with Dey et al. (2017) though that the lamprologine cichlids of Lake Tanganyika may constitute a fundamental test case for the theory of social evolution, but better information on their behaviour and phylogenetic relationships is needed to allow meaningful analyses.
Date Issued
2018
Publication Type
Article
Subject(s)
500 Science > 590 Animals (Zoology)
500 Science > 570 Life sciences; biology
Language(s)
en
Author(s)
Tanaka, Hirokazu  
Institut für Ökologie und Evolution, Verhaltensökologie  
Frommen, Joachim Gerhard  
Institut für Ökologie und Evolution, Verhaltensökologie  
Koblmüller, Stephan
Sefc, Kristina M
Mc Gee, Matthew David  
Institut für Ökologie und Evolution (IEE)  
Kohda, Masanori
Awata, Satoshi
Hori, Michio
Taborsky, Michael  
Institut für Ökologie und Evolution, Verhaltensökologie  
Additional Credits
Institut für Ökologie und Evolution (IEE)  
Institut für Ökologie und Evolution, Verhaltensökologie  
Journal
Ethology
Publisher
Wiley-Blackwell
ISSN
0179-1613
Access(Rights)
restricted
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