Background Ancient protein sequences are increasingly used to elucidate the phylogenetic relationships between extinct and extant mammalian taxa. Here, we apply these recent developments to Middle Pleistocene bone specimens of the rhinoceros genus Stephanorhinus. No biomolecular sequence data is currently available for this genus, leaving phylogenetic hypotheses on its evolutionary relationships to extant and extinct rhinoceroses untested. Furthermore, recent phylogenies based on Rhinocerotidae (partial or complete) mitochondrial DNA sequences differ in the placement of the Sumatran rhinoceros (Dicerorhinus sumatrensis). Therefore, studies utilising ancient protein sequences from Middle Pleistocene contexts have the potential to provide fur...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
Background Ancient protein sequences are increasingly used to elucidate the phylogenetic relationshi...
Background Ancient protein sequences are increasingly used to elucidate the phylogenetic relationshi...
Background: Ancient protein sequences are increasingly used to elucidate the phylogenetic relationsh...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
peer reviewedThe sequencing of ancient DNA has enabled the reconstruction of speciation, migration a...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
Background Ancient protein sequences are increasingly used to elucidate the phylogenetic relationshi...
Background Ancient protein sequences are increasingly used to elucidate the phylogenetic relationshi...
Background: Ancient protein sequences are increasingly used to elucidate the phylogenetic relationsh...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
peer reviewedThe sequencing of ancient DNA has enabled the reconstruction of speciation, migration a...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...
The sequencing of ancient DNA has enabled the reconstruction of speciation, migration and admixture ...