Phylogenetic relationships among superfamilies of Neritimorpha (Mollusca: Gastropoda) (original) (raw)

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| logo citeas | Uribe, J. E., Colgan, D., Castro, L. R., Kano, Y., & Zardoya, R. (2016, November). Phylogenetic relationships among superfamilies of Neritimorpha (Mollusca: Gastropoda). Molecular Phylogenetics and Evolution. Elsevier BV. http://doi.org/10.1016/j.ympev.2016.07.021 | | | --------------------------------------------------------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ | |

Título:
Autor: CSIC ORCID CVN; Colgan, Don; Castro, Lyda R.; Kano, Yasunori; Zardoya, Rafael CSIC ORCID
Financiadores: Ministerio de Ciencia e Innovación (España)
Palabras clave: NeritoideaMitogenomic phylogenyHydrocenoideaHelicinoideaNeritopsoidea
Fecha de publicación: nov-2016
Editor: Elsevier
Citación: Molecular Phylogenetics and Evolution 104: 21-31 (2016)
Resumen: Despite the extraordinary morphological and ecological diversity of Neritimorpha, few studies have focused on the phylogenetic relationships of this lineage of gastropods, which includes four extant superfamilies: Neritopsoidea, Hydrocenoidea, Helicinoidea, and Neritoidea. Here, the nucleotide sequences of the complete mitochondrial genomes of Georissa bangueyensis (Hydrocenoidea), Neritina usnea (Neritoidea), and Pleuropoma jana (Helicinoidea) and the nearly complete mt genomes of Titiscania sp. (Neritopsoidea) and Theodoxus fluviatilis (Neritoidea) were determined. Phylogenetic reconstructions using probabilistic methods were based on mitochondrial (13 protein coding genes and two ribosomal rRNA genes), nuclear (partial 28S rRNA, 18S rRNA, actin, and histone H3 genes) and combined sequence data sets. All phylogenetic analyses except one converged on a single, highly supported tree in which Neritopsoidea was recovered as the sister group of a clade including Helicinoidea as the sister group of Hydrocenoidea and Neritoidea. This topology agrees with the fossil record and supports at least three independent invasions of land by neritimorph snails. The mitochondrial genomes of Titiscania sp., G. bangueyensis, N. usnea, and T. fluviatilis share the same gene organization previously described for Nerita mt genomes whereas that of P. jana has undergone major rearrangements. We sequenced about half of the mitochondrial genome of another species of Helicinoidea, Viana regina, and confirmed that this species shares the highly derived gene order of P. jana.
URI: http://hdl.handle.net/10261/156227
DOI: 10.1016/j.ympev.2016.07.021
Identificadores: doi: 10.1016/j.ympev.2016.07.021issn: 1095-9513
Licencia de uso: http://creativecommons.org/licenses/by-nc-nd/4.0/
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