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Collareta, A.

Publications and source records attributed to Collareta, A..

2 recordsLinked to original sources

Phylogeny is not taxonomy: lessons on higher classification from turtle and whale barnacles (Cirripedia: Coronuloidea)

Phylogeny and taxonomy are related but not identical: phylogeny estimates common ancestry, whereas taxonomy must also provide diagnosable, stable, informative, and useful classifications. We examine this distinction using turtle and whale barnacles of the superfamily Coronuloidea, a group with an extensive fossil record, marked ecological specialization, a long history of morphology-based classification, and a recent topology-driven reclassification that merged recognized higher taxa to preserve monophyly. These changes reduced diagnosability and biological coherence, weakened historical continuity, and relied on placements insufficiently tested against morphological and phylogenetic evidence. Our reanalysis of published molecular datasets shows that critical relationships are sensitive to marker composition and taxon sampling. Together with morphological considerations on extant and fossil forms, these results indicate that topology alone is insufficient for coherent higher classification. We argue that higher taxa should be evaluated using complementary criteria: diagnosability, stability, utility, and monophyly, rather than by mechanically translating a preferred tree into Linnaean ranks.

zoology↗

Late Miocene transformation of Mediterranean Sea biodiversity

Understanding deep-time marine biodiversity change under the combined effects of climate and connectivity changes is fundamental for predicting the impacts of modern climate change in semi-enclosed seas. We quantify the Late Miocene-Early Pliocene (11.63-3.6 Ma) taxonomic diversity of the Mediterranean Sea for calcareous nannoplankton, dinocysts, foraminifera, ostracods, corals, molluscs, bryozoans, echinoids, fishes, and marine mammals. During this time, marine biota was affected by global climate cooling and the restriction of the Mediterraneans connection to the Atlantic Ocean that peaked with the Messinian Salinity Crisis. Although the net change in species richness from the Tortonian to the Zanclean varies by group, species turnover is greater than 30% in all cases. The results show clear perturbation already in the pre-evaporitic Messinian (7.25-5.97 Ma), with patterns differing among groups and sub-basins.

paleontology↗