MicroRNAs and phylogenomics resolve the relationships of Tardigrada and suggest that velvet worms are the sister group of Arthropoda
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- 6 September 2011
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 108 (38) , 15920-15924
- https://doi.org/10.1073/pnas.1105499108
Abstract
Morphological data traditionally group Tardigrada (water bears), Onychophora (velvet worms), and Arthropoda (e.g., spiders, insects, and their allies) into a monophyletic group of invertebrates with walking appendages known as the Panarthropoda. However, molecular data generally do not support the inclusion of tardigrades within the Panarthropoda, but instead place them closer to Nematoda (roundworms). Here we present results from the analyses of two independent genomic datasets, expressed sequence tags (ESTs) and microRNAs (miRNAs), which congruently resolve the phylogenetic relationships of Tardigrada. Our EST analyses, based on 49,023 amino acid sites from 255 proteins, significantly support a monophyletic Panarthropoda including Tardigrada and suggest a sister group relationship between Arthropoda and Onychophora. Using careful experimental manipulations—comparisons of model fit, signal dissection, and taxonomic pruning—we show that support for a Tardigrada + Nematoda group derives from the phylogenetic artifact of long-branch attraction. Our small RNA libraries fully support our EST results; no miRNAs were found to link Tardigrada and Nematoda, whereas all panarthropods were found to share one unique miRNA (miR-276). In addition, Onychophora and Arthropoda were found to share a second miRNA (miR-305). Our study confirms the monophyly of the legged ecdysozoans, shows that past support for a Tardigrada + Nematoda group was due to long-branch attraction, and suggests that the velvet worms are the sister group to the arthropods.Keywords
This publication has 50 references indexed in Scilit:
- Acoelomorph flatworms are deuterostomes related to XenoturbellaNature, 2011
- microRNAs reveal the interrelationships of hagfish, lampreys, and gnathostomes and the nature of the ancestral vertebrateProceedings of the National Academy of Sciences, 2010
- Improved Phylogenomic Taxon Sampling Noticeably Affects Nonbilaterian RelationshipsMolecular Biology and Evolution, 2010
- Ecdysozoan Mitogenomics: Evidence for a Common Origin of the Legged Invertebrates, the PanarthropodaGenome Biology and Evolution, 2010
- Deep Genomic-Scale Analyses of the Metazoa Reject Coelomata: Evidence from Single- and Multigene Families Analyzed Under a Supertree and Supermatrix ParadigmGenome Biology and Evolution, 2010
- Phylogenetic-Signal Dissection of Nuclear Housekeeping Genes Supports the Paraphyly of Sponges and the Monophyly of EumetazoaMolecular Biology and Evolution, 2009
- PhyloBayes 3: a Bayesian software package for phylogenetic reconstruction and molecular datingBioinformatics, 2009
- Phylogenomics Revives Traditional Views on Deep Animal RelationshipsCurrent Biology, 2009
- MicroRNAs: Target Recognition and Regulatory FunctionsCell, 2009
- Evidence for a clade of nematodes, arthropods and other moulting animalsNature, 1997