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Molecular Phylogenetics and Evolution|April 21, 2016
Evaluating the phylogenetic signal limit from mitogenomes, slow evolving nuclear genes, and the concatenation approach. New insights into the Lacertini radiation using fast evolving nuclear genes and species treesJoana Mendes, D James Harris, Salvador Carranza, et al.Molecular Phylogenetics and Evolution|April 17, 2016
Phylogenomic analyses reveal novel relationships among snake familiesJeffrey W Streicher, John J WiensMolecular Phylogenetics and Evolution|March 9, 2016
The quest to resolve recent radiations: Plastid phylogenomics of extinct and endangered Hawaiian endemic mints (Lamiaceae)Andreanna J Welch, Katherine Collins, Aakrosh Ratan, et al.Molecular Phylogenetics and Evolution|March 12, 2016
Three routes to crypsis: Stasis, convergence, and parallelism in the Mastigias species complex (Scyphozoa, Rhizostomeae)H F Swift, L Gómez Daglio, M N DawsonMolecular Phylogenetics and Evolution|February 24, 2016
Contributions of North American endophytes to the phylogeny, ecology, and taxonomy of Xylariaceae (Sordariomycetes, Ascomycota)Jana M U'Ren, Jolanta Miadlikowska, Naupaka B Zimmerman, et al.Molecular Phylogenetics and Evolution|February 25, 2016
The historical biogeography of groupers: Clade diversification patterns and processesKa Yan Ma, Matthew Thomas Craig, John Howard Choat, et al.Molecular Phylogenetics and Evolution|May 23, 2012
Molecular phylogenetics of a South Pacific sap beetle species complex (Carpophilus spp., Coleoptera: Nitidulidae)Samuel D J Brown, Karen F Armstrong, Robert H CruickshankMolecular Phylogenetics and Evolution|June 12, 2012
A mitochondrial genome phylogeny of termites (Blattodea: Termitoidae): robust support for interfamilial relationships and molecular synapomorphies define major cladesStephen L Cameron, Nathan Lo, Thomas Bourguignon, et al.Molecular Phylogenetics and Evolution|July 30, 2013
Elucidating the origin of the ExbBD components of the TonB system through Bayesian inference and maximum-likelihood phylogeniesLivingstone MarmonMolecular Phylogenetics and Evolution|July 30, 2013
Molecular phylogenetic analyses identify Alpine differentiation and dysploid chromosome number changes as major forces for the evolution of the European endemic Phyteuma (Campanulaceae)Gerald M Schneeweiss, Clemens Pachschwöll, Andreas Tribsch, et al.Pageof 737