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Molecular Phylogenetics and Evolution|March 17, 2004
Protein phylogenies robustly resolve the deep-level relationships within EuglenozoaAlastair G B Simpson, Andrew J RogerCurrent Biology : CB|October 29, 2002
Eukaryotic evolution: getting to the root of the problemAlastair G B Simpson, Andrew J RogerCurrent Biology : CB|February 27, 2009
Evolution: revisiting the root of the eukaryote treeAndrew J Roger, Alastair G B SimpsonMolecular Biology and Evolution|November 26, 2005
Comprehensive multigene phylogenies of excavate protists reveal the evolutionary positions of "primitive" eukaryotesAlastair G B Simpson, Yuji Inagaki, Andrew J RogerFrontiers in Microbiology|June 15, 2017
Adaptations to High Salt in a Halophilic Protist: Differential Expression and Gene Acquisitions through Duplications and Gene TransfersTommy Harding, Andrew J Roger, Alastair G B SimpsonMolecular Biology and Evolution|November 26, 2002
The evolutionary history of kinetoplastids and their kinetoplastsAlastair G B Simpson, Julius Lukes, Andrew J RogerNature|September 20, 2002
Eukaryotic evolution: early origin of canonical intronsAlastair G B Simpson, Erin K MacQuarrie, Andrew J RogerNature Microbiology|June 12, 2019
A natural toroidal microswimmer with a rotary eukaryotic flagellumSebastian Hess, Laura Eme, Andrew J Roger, et al.The Journal of Eukaryotic Microbiology|September 3, 2024
Characterization of Skoliomonas gen. nov., a haloalkaliphilic anaerobe related to barthelonids (Metamonada)Yana Eglit, Shelby K Williams, Andrew J Roger, et al.Genome Biology and Evolution|July 15, 2016
Osmoadaptative Strategy and Its Molecular Signature in Obligately Halophilic Heterotrophic ProtistsTommy Harding, Matthew W Brown, Alastair G B Simpson, et al.Pageof 24