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Williams-Marland, B.

Publications and source records attributed to Williams-Marland, B..

2 recordsLinked to original sources

All for one or one for all? Disentangling the Juncus bufonius complex through morphometrics, cytometry and genomics

Juncus bufonius L. s.l. is a species complex with several ploidy levels, for which species delimitation remains unclear due to a lack of reliable morphological characters and the paucity of molecular studies. To clarify taxonomic and geographic relationships in the complex, we combined genomic, cytometric and morphological data from a broad latitudinal range from England down to Spain. We collected morphometric and cytometric data from 31 populations, and genomic data were obtained through Hyb-Seq using the Angiosperm353 kit for a subset of individuals. These three datasets were combined to explore phylogenetic relationships, population structure, and the validity of four previously proposed morphospecies (J. bufonius s.str., a hexaploid; J. minutulus, a tetraploid; and J. ranarius and J. hybridus, both diploids). Sequencing supported the separation of diploids and polyploids as two distinct taxa, but morphometric characters used previously to describe morphospecies showed continuous variation with no diagnostic value, and were not congruent with genomic and cytometric data. Polyploids likely originated through allopolyploidisation from diploids and tetraploids. Phylogenetic lineages were extensively mixed geographically, both for diploid and polyploid taxa, which suggests repeated long-distance dispersal events for both diploids and polyploids, and no separation of taxa by geography. Splitting of diploids into J. ranarius and J. hybridus was not supported. We recommend J. ranarius be treated as a synonym of J. hybridus, and that tetraploids and hexaploids be grouped under J. bufonius. The observed geographical patterns are consistent with high rates of seed dispersal by migratory waterbirds.

plant biology↗

Genomic structure, introgression, niche overlap, and morphological variation challenges species delimitation in Thymus sect. Mastichina

Species delimitation remains a major challenge in understanding biodiversity, particularly in recently diverged lineages, where extensive morphological variability complicates taxonomic inference. In this study, we investigate patterns of morphological and ecological variation within Thymus sect. Mastichina, a Mediterranean lineage that includes the endangered species T. albicans. Previous genomic analyses revealed clear differentiation between two major groups corresponding to ploidy levels, as well as additional genetic structure among diploid lineages. Here, we integrate this genomic framework with detailed analyses of floral morphology and ecological niches to assess the correspondence between phenotypic, ecological, and genetic variation. Our results reveal substantial overlap among genetic lineages at both morphological and ecological levels. Although some differentiation is associated with ploidy level, particularly in floral traits, extensive variability within several lineages obscures clear taxonomic boundaries based on discrete morphological characters. By contrast, some diploid lineages (notably the Cadiz and Algarve groups) show lower morphological variability but still both overlap in morphology and ecological niche. We morphologically characterized a recently discovered diploid lineage (Hercynian) that appears to be cryptic with the tetraploid T. mastichina. Patterns of admixture involving this Hercynian lineage, especially with the diploid Donana group, contribute to pronounced phenotypic overlap, whereas no significant effect of tetraploid introgression on diploid morphology was detected. Ecological niche analyses indicate that niche differentiation is primarily associated with ploidy level rather than among diploid lineages, except for the Hercynian group. Overall, our results demonstrate a marked discordance between phenotypic variation and genetic structure, supporting the interpretation of Thymus sect. Mastichina as a complex of cryptic evolutionary lineages. These findings highlight the limitations of morphology-based taxonomy and emphasize the need for an integrative framework incorporating genome size, genomic information, and geographic distribution for species delimitation.

plant biology↗