An Unbiased Molecular Approach Using 3′-UTRs Resolves the Avian Family-Level Tree of Life

Author:

Kuhl Heiner123,Frankl-Vilches Carolina1,Bakker Antje1,Mayr Gerald4,Nikolaus Gerhard1,Boerno Stefan T2,Klages Sven2,Timmermann Bernd2,Gahr Manfred1ORCID

Affiliation:

1. Department of Behavioural Neurobiology, Max Planck Institute for Ornithology, Seewiesen, Germany

2. Max Planck Institute for Molecular Genetics, Sequencing Core Facility, Berlin, Germany

3. Department of Ecophysiology and Aquaculture, Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany

4. Ornithological Section, Senckenberg Research Institute, Frankfurt am Main, Germany

Abstract

Abstract Presumably, due to a rapid early diversification, major parts of the higher-level phylogeny of birds are still resolved controversially in different analyses or are considered unresolvable. To address this problem, we produced an avian tree of life, which includes molecular sequences of one or several species of ∼90% of the currently recognized family-level taxa (429 species, 379 genera) including all 106 family-level taxa of the nonpasserines and 115 of the passerines (Passeriformes). The unconstrained analyses of noncoding 3-prime untranslated region (3′-UTR) sequences and those of coding sequences yielded different trees. In contrast to the coding sequences, the 3′-UTR sequences resulted in a well-resolved and stable tree topology. The 3′-UTR contained, unexpectedly, transcription factor binding motifs that were specific for different higher-level taxa. In this tree, grebes and flamingos are the sister clade of all other Neoaves, which are subdivided into five major clades. All nonpasserine taxa were placed with robust statistical support including the long-time enigmatic hoatzin (Opisthocomiformes), which was found being the sister taxon of the Caprimulgiformes. The comparatively late radiation of family-level clades of the songbirds (oscine Passeriformes) contrasts with the attenuated diversification of nonpasseriform taxa since the early Miocene. This correlates with the evolution of vocal production learning, an important speciation factor, which is ancestral for songbirds and evolved convergent only in hummingbirds and parrots. As 3′-UTR-based phylotranscriptomics resolved the avian family-level tree of life, we suggest that this procedure will also resolve the all-species avian tree of life

Funder

Max Planck Society

German Research Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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