Hidden and cryptic species reflect parallel and correlated evolution in the phylogeny of the genus Callyntra (Coleoptera: Tenebrionidae) of Central Chile.

Mol Phylogenet Evol

Laboratorio de Genética y Evolución, Departamento de Ciencias Ecológicas, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Ñuñoa, Santiago, Chile. Electronic address:

Published: October 2018

AI Article Synopsis

  • The origin of cryptic species in the genus Callyntra is linked to recent speciation events and environmental factors, with challenges in defining their taxonomy necessitating phylogenetic studies.
  • Researchers used mitochondrial and nuclear genes to reconstruct the phylogeny and identify species, uncovering five clades along with indications of five potential new species.
  • Findings suggest that specific elytral designs are adapted to different habitats, pointing to parallel evolution and later stabilization as key processes in the development of these cryptic species in central Chile.

Article Abstract

The origin of cryptic species has traditionally been associated with events of recent speciation, genetic constraints, selection of an adaptive character, sexual selection and/or convergent evolution. Species of the genus Callyntra inhabit coastal terraces, mountain slopes, and peaks; their elytral designs are associated with each of these habitats. However, cryptic species have been described within each of these habitats; the taxonomy of this group has been problematic, thus establishing the phylogenetic relationships in this group is fundamental to clarify the systematics and evolutionary patterns of Callyntra. We reconstructed the phylogeny of this group using two mitochondrial genes (COI, 16S) and one nuclear gene (Mp20). We also performed species delimitation using PTP based methods (PTP, mlPTP, bPTP) and GMYC, and evaluated the evolution of the elytral design related to habitat preference. The results showed a tree with five clades, that together with the different methods of species delimitation recovered the described species and suggested at least five new species. The elytral design and habitat preference showed phylogenetic signals. We propose a new classification based on monophyletic groups recovered by phylogenetic analyses. We also suggest that parallel evolution in different habitats and later stasis in the elytral design would be the cause of the origin of cryptic species in this group from central Chile.

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http://dx.doi.org/10.1016/j.ympev.2018.04.022DOI Listing

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