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- W4290102360 endingPage "59" @default.
- W4290102360 startingPage "39" @default.
- W4290102360 abstract "Recent advancements in phylogenetic resolution at higher taxonomic levels within the mammalian order Carnivora have been stimulated by the increasing application of nuclear DNA, which is less homoplastic than mitochondrial DNA, and therefore better suited for studying deep-level (e.g. among genera or older) relationships. Immense progress in sequencing nuclear and mitochondrial DNAs from carnivoran species has resulted in a wealth of data in publicly available DNA databases, allowing an improved understanding of phylogenetic relationships at every taxonomic level using the ‘total evidence’ supermatrix or supertree method. Here, we review recent molecular systematic studies for one of the most enigmatic species, the red panda, Ailurus fulgens , and show that the use of nuclear DNA, Bayesian and maximum likelihood phylogenetic inference, and the supermatrix approach have improved the resolution of the phylogenetic position of this species. Secondly, we show that such methodological improvements have also clarified the evolution of the family Mustelidae (weasels, martens, otters, badgers, and allies). We demonstrate this in light of phylogeny, chronology, and historical biogeography and provide an up-to-date subfamily classification of the Mustelidae. Finally, we discuss the implications of molecular systematics to setting and defining conservation priorities on the basis of the EDGE (Evolutionarily Distinct and Globally Endangered) value, and conclude that the supermatrix-based priority setting is preferable to the supertree-based one." @default.
- W4290102360 created "2022-08-06" @default.
- W4290102360 creator A5030093103 @default.
- W4290102360 creator A5047717305 @default.
- W4290102360 date "2022-08-05" @default.
- W4290102360 modified "2023-09-26" @default.
- W4290102360 title "Molecular Systematics of the Caniform Carnivora and its Implications for Conservation" @default.
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