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Edwards, Scott

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Edwards

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Edwards, Scott

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Now showing 1 - 3 of 3
  • Publication

    The western painted turtle genome, a model for the evolution of extreme physiological adaptations in a slowly evolving lineage

    (BioMed Central, 2013) Bradley Shaffer, H; Minx, Patrick; Warren, Daniel E; Shedlock, Andrew M; Thomson, Robert C; Valenzuela, Nicole; Abramyan, John; Amemiya, Chris T; Badenhorst, Daleen; Biggar, Kyle K; Borchert, Glen M; Botka, Christopher W; Bowden, Rachel M; Braun, Edward L; Bronikowski, Anne M; Bruneau, Benoit G; Buck, Leslie T; Capel, Blanche; Castoe, Todd A; Czerwinski, Mike; Delehaunty, Kim D; Edwards, Scott; Fronick, Catrina C; Fujita, Matthew; Fulton, Lucinda; Graves, Tina A; Green, Richard E; Haerty, Wilfried; Hariharan, Ramkumar; Hernandez, Omar; Hillier, LaDeana W; Holloway, Alisha K; Janes, Daniel; Janzen, Fredric J; Kandoth, Cyriac; Kong, Lesheng; de Koning, AP Jason; Li, Yang; Literman, Robert; McGaugh, Suzanne E; Mork, Lindsey; O'Laughlin, Michelle; Paitz, Ryan T; Pollock, David D; Ponting, Chris P; Radhakrishnan, Srihari; Raney, Brian J; Richman, Joy M; St John, John; Schwartz, Tonia; Sethuraman, Arun; Spinks, Phillip Q; Storey, Kenneth B; Thane, Nay; Vinar, Tomas; Zimmerman, Laura M; Warren, Wesley C; Mardis, Elaine R; Wilson, Richard K

    Background: We describe the genome of the western painted turtle, Chrysemys picta bellii, one of the most widespread, abundant, and well-studied turtles. We place the genome into a comparative evolutionary context, and focus on genomic features associated with tooth loss, immune function, longevity, sex differentiation and determination, and the species' physiological capacities to withstand extreme anoxia and tissue freezing. Results: Our phylogenetic analyses confirm that turtles are the sister group to living archosaurs, and demonstrate an extraordinarily slow rate of sequence evolution in the painted turtle. The ability of the painted turtle to withstand complete anoxia and partial freezing appears to be associated with common vertebrate gene networks, and we identify candidate genes for future functional analyses. Tooth loss shares a common pattern of pseudogenization and degradation of tooth-specific genes with birds, although the rate of accumulation of mutations is much slower in the painted turtle. Genes associated with sex differentiation generally reflect phylogeny rather than convergence in sex determination functionality. Among gene families that demonstrate exceptional expansions or show signatures of strong natural selection, immune function and musculoskeletal patterning genes are consistently over-represented. Conclusions: Our comparative genomic analyses indicate that common vertebrate regulatory networks, some of which have analogs in human diseases, are often involved in the western painted turtle's extraordinary physiological capacities. As these regulatory pathways are analyzed at the functional level, the painted turtle may offer important insights into the management of a number of human health disorders.

  • Publication

    Evolutionary Dynamics of Intron Size, Genome Size, and Physiological Correlates in Archosaurs

    (University of Chicago Press, 2002) Waltari, Eric; Edwards, Scott

    It has been proposed that intron and genome sizes in birds are reduced in comparison with mammals because of the metabolic demands of flight. To test this hypothesis, we examined the sizes of 14 introns in a nonflying relative of birds, the American alligator (Alligator mississippiensis), and in 19 flighted and flightless birds in 12 taxonomic orders. Our results indicate that a substantial fraction (66%) of the reduction in intron size as well as in genome size had already occurred in nonflying archosaurs. Using phylogenetically independent contrasts, we found that the proposed inverse correlation of genome size and basal metabolic rate (BMR) is significant among amniotes and archosaurs, whereas intron and genome size variation within birds showed no significant correlation with BMR. We show statistically that the distribution of genome sizes in birds and mammals is underdispersed compared with the Brownian motion model and consistent with strong stabilizing selection; that genome size differences between vertebrate clades are overdispersed and punctuational; and that evolution of BMR and avian intron size is consistent with Brownian motion. These results suggest that the contrast between genome size/BMR and intron size/BMR correlations may be a consequence of different intensities of selection for these traits and that we should not expect changes in intron size to be significantly associated with metabolically costly behaviors such as flight.

  • Publication

    Sequencing Three Crocodilian Genomes to Illuminate the Evolution of Archosaurs and Amniotes

    (BioMed Central, 2012) St John, John A; Braun, Edward L; Isberg, Sally R; Miles, Lee G; Chong, Amanda Y; Gongora, Jaime; Dalzell, Pauline; Bed'Hom, Bertrand; Burgess, Shane C; Cooksey, Amanda M; Castoe, Todd A; Densmore, Llewellyn D; Drew, Jennifer C; Faircloth, Brant C; Greenwold, Matthew J; Hoffmann, Federico G; Howard, Jonathan M; Iguchi, Taisen; Janes, Daniel E; Khan, Shahid Yar; Kohno, Satomi; de Koning, AP Jason; Lance, Stacey L; McCarthy, Fiona M; McCormack, John E; Merchant, Mark E; Peterson, Daniel G; Pollock, David D; Pourmand, Nader; Raney, Brian J; Roessler, Kyria A; Sanford, Jeremy R; Sawyer, Roger H; Schmidt, Carl J; Triplett, Eric W; Tuberville, Tracey D; Venegas-Anaya, Miryam; Howard, Jason T; Jarvis, Erich D; Guillette, Louis J; Glenn, Travis C; Ray, David A; Moran, Christopher; Abzhanov, Arkhat; Crawford, Nicholas G.; Moran, Christopher; Edwards, Scott; Fujita, Matthew; Green, Richard E.

    The International Crocodilian Genomes Working Group (ICGWG) will sequence and assemble the American alligator (Alligator mississippiensis), saltwater crocodile (Crocodylus porosus) and Indian gharial (Gavialis gangeticus) genomes. The status of these projects and our planned analyses are described.