Mitochondrial genome and nuclear sequence data support Myzostomida as part of the annelid radiation

Bleidorn, Christoph; Eeckhaut, Igor; Podsiadlowski, Lars; Schult, Nancy; McHugh, Damhnait; Halanych, Kenneth M.; Milinkovitch, Michel C.; Tiedemann, Ralph

Abstract

The echinoderm symbionts Myzostomida are marine worms that show an enigmatic lophotrochozoan body plan. Historically, their phylogenetic origins were obscured due to disagreement about which morphological features are evolutionarily conserved, but now most morphological evidence points to annelid origins. In contrast, recent phylogenetic analyses using different molecular markers produced variable results regarding the position of myzostomids, but all suggested these worms are not derived annelids. To reexamine this issue, we analyzed data from nuclear genes (18S rDNA, 28S rDNA, Myosin II, and Elongation Factor-1 alpha), and a nearly complete myzostomid mitochondrial genome. Here, we show that the molecular data are in agreement with the morphological evidence that myzostomids are part of the annelid radiation. This result is robustly supported by mitochondrial (gene order and sequence data) and nuclear data, as well as by recent ultrastructural investigations. Using Bayes factor comparison, alternative hypotheses are shown to lack support. Thus, myzostomids probably evolved from a segmented ancestor and gained a derived anatomy during their long evolutionary history as echinoderm symbionts.

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Título según WOS: ID WOS:000248848400016 Not found in local WOS DB
Título de la Revista: MOLECULAR BIOLOGY AND EVOLUTION
Volumen: 24
Número: 8
Editorial: OXFORD UNIV PRESS
Fecha de publicación: 2007
Página de inicio: 1690
Página final: 1701
DOI:

10.1093/molbev/msm086

Notas: ISI