Bird clades with less complex appendicular skeletons tend to have higher species richness
Andrew Brinkworth (),
Emily Green,
Yimeng Li,
Jack Oyston,
Marcello Ruta and
Matthew A. Wills
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Andrew Brinkworth: University of Bath
Emily Green: University of Lincoln, Green Lane
Yimeng Li: Chinese Academy of Sciences
Jack Oyston: University of Bath
Marcello Ruta: University of Lincoln, Green Lane
Matthew A. Wills: University of Bath
Nature Communications, 2023, vol. 14, issue 1, 1-13
Abstract:
Abstract Species richness is strikingly uneven across taxonomic groups at all hierarchical levels, but the reasons for this heterogeneity are poorly understood. It is well established that morphological diversity (disparity) is decoupled from taxonomic diversity, both between clades and across geological time. Morphological complexity has been much less studied, but there is theory linking complexity with differential diversity across groups. Here we devise an index of complexity from the differentiation of the fore and hind limb pairs for a sample of 983 species of extant birds. We test the null hypothesis that this index of morphological complexity is uncorrelated with clade diversity, revealing a significant and negative correlation between the species richness of clades and the mean morphological complexity of those clades. Further, we find that more complex clades tend to occupy a smaller number of dietary and habitat niches, and that this proxy for greater ecological specialisation correlates with lower species richness. Greater morphological complexity in the appendicular skeleton therefore appears to hinder the generation and maintenance of species diversity. This may result from entrenchment into morphologies and ecologies that are less capable of yielding further diversity.
Date: 2023
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Persistent link: https://EconPapers.repec.org/RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-41415-2
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DOI: 10.1038/s41467-023-41415-2
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