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In order to trace morphological transformations and major changes in the feeding behaviour along sauropodomorph evolution, we constructed an informal supertree based on the results of the most recent phylogenetic analyses for the group and its closest relatives (e.g. refs7,22,26,36,37,49,50,51,52,53).
This topology depicts 'prosauropods' as a paraphyletic assemblage with respect to Sauropoda, as in most recent phylogenetic analyses of basal sauropodomorphs [12] [14], [17], [50].
The most recent phylogenetic studies of †Creodonta [15], [17] have concentrated on subclades within the group, and did not address the relationships of †Creodonta in a broader framework.
The resulting species tree is largely consistent with the most recent phylogenetic analyses.
The most recent phylogenetic study suggests a minimum of two independent acquisitions of host alternation [ 12].
All nodes have 100% bootstrap support and the topology is consistent with the most recent phylogenetic treatment of Trifolium [ 12].
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Literature used in construction of the cladogram include the most recent molecular phylogenetic analyses for Falconidae [31], Accipitridae [32], and birds as a whole [28].
The most recent molecular phylogenetic analyses of placental mammals support a relatively basal position of afrotherians and xenarthrans (except for [ 15]), and a monophyletic Rodentia and Glires [ 18], but the precise identity of the basal-most placental taxon remains elusive.
According to most of the recent phylogenetic analyses, the Alveolata, Rhizaria, and Stramenopiles form the superfamily SAR [ 27, 54].
The most recent multi-gene phylogenetic reconstructions based on nine gene sequences from the plastid, mitochondrial, and nuclear genomes [ 17] generate trees supporting each of these two hypotheses depending on the method of phylogenetic analysis and the genes included.
Most recent, morphology-based, phylogenetic studies of fossil and extant turtles agree that the Middle to Late Jurassic was a particularly important phase in the early diversification of crown group Testudines [ 1- 6].
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