• Early Pleistocene enamel proteome from Dmanisi resolves Stephanorhinus phylogeny 

      Cappellini, Enrico; Welker, Frido; Pandolfi, Luca; Ramos-Madrigal, Jazmín; Samodova, Diana; Rüther, Patrick L.; Fotakis, Anna K.; Lyon, David; Moreno-Mayar, J. Víctor; Bukhsianidze, Maia; Jersie-Christensen, Rosa Rakownikow; Mackie, Meaghan; Ginolhac, Aurélien; Ferring, Reid; Tappen, Martha; Palkopoulou, Eleftheria; Dickinson, Marc R.; Stafford, Jr., Thomas W.; Chan, Yvonne L.; Götherström, Anders; Nathan, Senthilvel K.S.S.; Heintzman, Peter D.; Kapp, Joshua D.; Kirillova, Irina V.; Moodley, Yoshan; Agusti, Jordi; Kahlke, Ralf-Dietrich; Kiladze, Gocha; Martínez-Navarro, Bienvenido; Liu, Shanlin; Sandoval Velasco, Marcela; Sinding, Mikkel-Holger S.; Kelstrup, Christian D.; Allentoft, Morten E.; Orlando, Ludovic; Penkman, Kirsty; Shapiro, Beth; Rook, Lorenzo; Dalén, Love; Gilbert, Marcus Thomas Pius; Olsen, Jesper V.; Lordkipanidze, David; Willerslev, Eske (Journal article; Peer reviewed, 2019)
      The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture events for extinct taxa1. However, the irreversible post-mortem degradation2 of ancient DNA has so far limited its ...