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Molecular analyses support placement of Eretmochelys within the taxonomic tribe Carettini, which includes the carnivorous loggerhead and ridley sea turtles, rather than in the tribe Chelonini, which includes the herbivorous green turtle.
None of the molecular analyses support the inclusion of the whale-fall endemic Anthosactis pearseae in this clade, although A. pearseae is frequently associated with the larger clade that includes Chemosynthina.
Molecular analyses support evolution of nine Group 1 VDPVs along five different lineages, starting from a common ancestral type 2 vaccine-derived Sabin-2/Sabin-1 recombinant strain, and independent evolution of three Group 2 VDPVs along one lineage starting from a different recombinant strain.
All these molecular analyses support the clonal hypothesis of the D. solani population.
Molecular analyses support the previous hypothesis that COL4A1 mutations cause toxic intracellular accumulation of the mutant protein, although further studies are required to rule out other pathomechanisms.
Overall, the molecular analyses support the imaging data in showing that ethanol administration to neonatal rat pups induced apoptotic neurodegeneration, whereas osmotin had a protective effect on mitochondria in neonatal rat brain tissues in vivo.
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Subsequent molecular analyses supported a monophyletic Gastrophryninae, though excluding Synapturanus and Otophryne[ 15, 16].
While several morphological and molecular studies agreed that a close relationship existed between Delphinidae and Phocoenidae [ 2, 7, 17, 29], other molecular analyses supported the sister relationship of Monodontidae and Phocoenidae [ 12, 13, 19, 20, 33, 65, 70, 83].
Recent molecular analyses supported the family Huaceae as sister to Oxalidales in the COM clade [ 4, 21, 22], but it is desirable to further corroborate these relationships using a broader taxon sampling.
Morphological and molecular analyses strongly support the monophyly of Sphingidae, and placement within the superfamily Bombycoidea [2], [29] [31].
Almost all molecular analyses strongly support the Pancrustacea hypothesis: crustaceans, instead of myriapods, are the closest relatives of the hexapods [ 15- 18].
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