The making of a (soil) star: phylogenetic relationships of the genus Lumbricus with insight into its evolution and biogeography

The widely distributed earthworm genus Lumbricus exhibits significant ecological and morphological diversity, playing essential roles in soil ecosystems. This study presents a comprehensive molecular phylogeny of the genus, incorporating eighteen taxa and four mitochondrial and anuclear marker. The...

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Detalles Bibliográficos
Autores: Fernández Marchán, Daniel, Martínez Navarro, Alejandro, Aira, Manuel, Decaëns, Thibaud, Gérard, Sylvain, Domínguez, Jorge
Tipo de recurso: artículo
Fecha de publicación:2025
País:España
Institución:Universidad Complutense de Madrid (UCM)
Repositorio:Docta Complutense
Idioma:inglés
OAI Identifier:oai:docta.ucm.es:20.500.14352/123265
Acceso en línea:https://hdl.handle.net/20.500.14352/123265
Access Level:acceso abierto
Palabra clave:575.8
595.14
574.9
575
Earthworms
Molecular phylogenetics
Taxonomy
Ancestral area reconstruction
Functional groups
Zoología
Evolución
Genética
Invertebrados
2401 Biología Animal (Zoología)
2401.14-2 Taxonomía Animal. Invertebrados no Insectos
2505.01 Biogeografía
2401.08 Genética Animal
Descripción
Sumario:The widely distributed earthworm genus Lumbricus exhibits significant ecological and morphological diversity, playing essential roles in soil ecosystems. This study presents a comprehensive molecular phylogeny of the genus, incorporating eighteen taxa and four mitochondrial and anuclear marker. The aim was to clarify the phylogenetic relationships within Lumbricus and examine the evolutionary trajectory of bioturbation behaviour and geographic origins. Phylogenetic analyses revealed three major clades within Lumbricus, with Lumbricus baicalensis emerging as the earliest branching species. Evolutionary relationships suggested that the common ancestor of the genus was an epigeic litter dweller, with epi-anecic traits appearing later in their evolutionary history. Ancestral area reconstruction indicated that the genus originated in France and Central Europe, aligning with previous hypotheses of an Alpine origin. Molecular phylogenetics reinforced the monophyly of the genus, confirming the species status of previously unassessed taxa, such as Lumbricus meliboeus and Lumbricus polyphemus. Additionally, high genetic divergence was found between some infraspecific taxa, suggesting that Lumbricus castaneus var. disjunctus and Lumbricus rubellus castaneoides may represent pseudocryptic species. Previous hypotheses about the giant endemic species Lumbricus badensis evolving from a common ancestor with Lumbricus friendi around the Last Glacial Maximum were not supported by our results. These findings contributed an evolutionary and biogeographic background to understand the current ecology and distribution of invasive Lumbricus species such as Lumbricus terrestris or Lumbricus castaneus, potentially opening the way to improved management of these impactful species.