Medusozoan Phylogeny and Character Evolution Clarified by New Large and Small Subunit rDNA Data and an Assessment of the Utility of Phylogenetic Mixture Models
Филогения медузозоев и эволюция признаков, уточнённые на основе новых данных по рДНК большой и малой субъединиц и оценки применимости филогенетических смесевых моделей
2006-02-01
SCID: 54.1/5swa28s9
Discuss with AI
Character evolutionLSU rDNAMedusozoan phylogenyPhylogenetic mixture modelsSSU rDNA
Figures from the paper
Abstract (AI)
A newly compiled data set of nearly complete sequences of the large subunit of the nuclear ribosome (LSU or 28S) sampled from 31 diverse medusozoans greatly clarifies the phylogenetic history of Cnidaria. These data have substantial power to discern among many of the competing hypotheses of relationship derived from prior work. Moreover, LSU data provide strong support at key nodes that were equivocal based on other molecular markers. Combining LSU sequences with those of the small subunit of the nuclear ribosome (SSU or 18S), we present a detailed working hypothesis of medusozoan relationships and discuss character evolution within this diverse clade. Stauromedusae, comprising the benthic, so-called stalked jellyfish, appears to be the sister group of all other medusozoans, implying that the free-swimming medusa stage, the motor nerve net, and statocysts of ecto-endodermal origin are features derived within Medusozoa. Cubozoans, which have had uncertain phylogenetic affinities since the elucidation of their life cycles, form a clade-named Acraspeda-with the scyphozoan groups Coronatae, Rhizostomeae, and Semaeostomeae. The polyps of both cubozoans and hydrozoans appear to be secondarily simplified. Hydrozoa is comprised by two well-supported clades, Trachylina and Hydroidolina. The position of Limnomedusae within Trachylina indicates that the ancestral hydrozoan had a biphasic life cycle and that the medusa was formed via an entocodon. Recently hypothesized homologies between the entocodon and bilaterian mesoderm are therefore suspect. Laingiomedusae, which has often been viewed as a close ally of the trachyline group Narcomedusae, is instead shown to be unambiguously a member of Hydroidolina. The important model organisms of the Hydra species complex are part of a clade, Aplanulata, with other hydrozoans possessing direct development not involving a ciliated planula stage. Finally, applying phylogenetic mixture models to our data proved to be of little additional value over a more traditional phylogenetic approach involving explicit hypothesis testing and bootstrap analyses under multiple optimality criteria. [18S; 28S; Cubozoa; Hydrozoa; medusa; molecular systematics; polyp; Scyphozoa; Staurozoa.].
Key Findings
1
A dataset of nearly complete LSU rDNA sequences from 31 diverse medusozoans substantially clarifies cnidarian phylogeny and resolves previously equivocal relationships.
2
Combined LSU and SSU analyses support Stauromedusae as sister to all other medusozoans, implying that free-swimming medusae, motor nerve nets, and ecto-endodermal statocysts evolved within Medusozoa.
3
Cubozoans form the clade Acraspeda with Coronatae, Rhizostomeae, and Semaeostomeae; cubozoan and hydrozoan polyps appear to be secondarily simplified.
4
Hydrozoa comprises two well-supported clades, Trachylina and Hydroidolina; Limnomedusae placement indicates an ancestral biphasic hydrozoan life cycle with medusae formed through an entocodon.
5
Laingiomedusae belongs unambiguously within Hydroidolina, while Hydra and related directly developing hydrozoans form the clade Aplanulata; phylogenetic mixture models added little value to these analyses.
Research Object
Medusozoan cnidarians and their evolutionary relationships
Research Subject
Phylogenetic relationships and character evolution inferred from combined LSU and SSU rDNA data, including evaluation of phylogenetic mixture models
Publication Details
Publication Date
2006-02-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest