Laying the foundations of evolutionary and systematic studies in crickets (Insecta, Orthoptera): a multilocus phylogenetic analysis
- 14 July 2015
- journal article
- research article
- Published by Wiley in Cladistics
- Vol. 32 (1), 54-81
- https://doi.org/10.1111/cla.12114
Abstract
Orthoptera have been used for decades for numerous evolutionary questions but several of its constituent groups, notably crickets, still suffer from a lack of a robust phylogenetic hypothesis. We propose the first phylogenetic hypothesis for the evolution of crickets sensu lato, based on analysis of 205 species, representing 88% of the subfamilies and 71% tribes currently listed in the database Orthoptera Species File (OSF). We reconstructed parsimony, maximum likelihood and Bayesian phylogenies using fragments of 18S, 28SA, 28SD, H3, 12S, 16S, and cytb (similar to 3600 bp). Our results support the monophyly of the cricket clade, and its subdivision into two clades: mole crickets and ant-loving crickets on the one hand, and all the other crickets on the other (i.e. crickets sensu stricto). Crickets sensu stricto form seven monophyletic clades, which support part of the OSF families, "subfamily groups", or subfamilies: the mole crickets (OSF Gryllotalpidae), the scaly crickets (OSF Mogoplistidae), and the true crickets (OSF Gryllidae) are recovered as monophyletic. Among the 22 sampled subfamilies, only six are monophyletic: Gryllotalpinae, Trigonidiinae, Pteroplistinae, Euscyrtinae, Oecanthinae, and Phaloriinae. Most of the 37 tribes sampled are para- or polyphyletic. We propose the best-supported clades as backbones for future definitions of familial groups, validating some taxonomic hypotheses proposed in the past. These clades fit variously with the morphological characters used today to identify crickets. Our study emphasizes the utility of a classificatory system that accommodates diagnostic characters and monophyletic units of evolution. Moreover, the phylogenetic hypotheses proposed by the present study open new perspectives for further evolutionary research, especially on acoustic communication and biogeography. (C) The Willi Hennig Society 2015.Keywords
This publication has 101 references indexed in Scilit:
- Secondary Sympatry Caused by Range Expansion Informs on the Dynamics of Microendemism in a Biodiversity HotspotPLOS ONE, 2012
- Mating Behaviour and Vibratory Signalling in Non-Hearing Cave Crickets Reflect Primitive Communication of EnsiferaPLOS ONE, 2012
- Changing resonator geometry to boost sound power decouples size and song frequency in a small insectProceedings of the National Academy of Sciences, 2012
- Wing stridulation in a Jurassic katydid (Insecta, Orthoptera) produced low-pitched musical calls to attract femalesProceedings of the National Academy of Sciences, 2012
- RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed modelsBioinformatics, 2006
- Phylogeny of Ensifera (Hexapoda: Orthoptera) using three ribosomal loci, with implications for the evolution of acoustic communicationMolecular Phylogenetics and Evolution, 2006
- MUSCLE: multiple sequence alignment with high accuracy and high throughputNucleic Acids Research, 2004
- A Molecular Biogeographic Analysis of the Relationship between North American Melanoploid Grasshoppers and Their Eurasian and South American RelativesMolecular Phylogenetics and Evolution, 2001
- The Effect of Taxon Sampling on Estimating Rate Heterogeneity Parameters of Maximum-Likelihood ModelsMolecular Biology and Evolution, 1999
- Confidence Limits on Phylogenies: An Approach Using the BootstrapEvolution, 1985