Person: Edwards, Scott
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Publication The genome of the green anole lizard and a comparative analysis with birds and mammals
(Nature Publishing Group, 2011) Alföldi, Jessica; Di Palma, Federica; Grabherr, Manfred; Williams, Christina; Kong, Lesheng; Mauceli, Evan; Russell, Pamela; Lowe, Craig B.; Glor, Richard E.; Jaffe, Jacob D.; Ray, David A.; Boissinot, Stephane; Shedlock, Andrew M.; Botka, Christopher; Castoe, Todd A.; Colbourne, John K.; Fujita, Matthew; Moreno, Ricardo Godinez; ten Hallers, Boudewijn F.; Haussler, David; Heger, Andreas; Heiman, David; Janes, Daniel E.; Johnson, Jeremy; de Jong, Pieter J.; Koriabine, Maxim Y.; Lara, Marcia; Novick, Peter A.; Organ, Chris L.; Peach, Sally E.; Poe, Steven; Pollock, David D.; de Queiroz, Kevin; Sanger, Thomas; Searle, Steve; Smith, Jeremy D.; Smith, Zachary; Swofford, Ross; Turner-Maier, Jason; Wade, Juli; Young, Sarah; Zadissa, Amonida; Edwards, Scott; Glenn, Travis C.; Schneider, Christopher; Losos, Jonathan; Lander, Eric; Breen, Matthew; Ponting, Chris P.; Lindblad-Toh, KerstinThe evolution of the amniotic egg was one of the great evolutionary innovations in the history of life, freeing vertebrates from an obligatory connection to water and thus permitting the conquest of terrestrial environments. Among amniotes, genome sequences are available for mammals and birds, but not for non-avian reptiles. Here we report the genome sequence of the North American green anole lizard, Anolis carolinensis .We find that A. carolinensis microchromosomes are highly syntenic with chicken microchromosomes, yet do not exhibit the high GC and low repeat content that are characteristic of avian microchromosomes. Also, A. carolinensis mobile elements are very young and diverse—more so than in any other sequenced amniote genome. The GC content of this lizard genome is also unusual in its homogeneity, unlike the regionally variable GC content found in mammals and birds. We describe and assign sequence to the previously unknown A. carolinensis X chromosome. Comparative gene analysis shows that amniote egg proteins have evolved significantly more rapidly than other proteins. An anole phylogeny resolves basal branches to illuminate the history of their repeated adaptive radiations.
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 KBackground: 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 The Anolis Lizard Genome: An Amniote Genome without Isochores
(Oxford University Press (OUP), 2011) Fujita, Matthew; Edwards, Scott; Ponting, Chris P.Isochores are large regions of relatively homogeneous nucleotide composition and are present in the genomes of all mammals and birds that have been sequenced to date. The newly sequenced genome of Anolis carolinensis provides the first opportunity to quantify isochore structure in a nonavian reptile. We find Anolis to have the most compositionally homogeneous genome of all amniotes sequenced thus far, a homogeneity exceeding that for the frog Xenopus. Based on a Bayesian algorithm, Anolis has smaller and less GC-rich isochores compared with human and chicken. Correlates generally associated with GC-rich isochores, including shorter introns and higher gene density, have all but disappeared from the Anolis genome. Using genic GC as a proxy for isochore structure so as to compare with other vertebrates, we found that GC content has substantially decreased in the lineage leading to Anolis since diverging from the common ancestor of Reptilia ∼275 Ma, perhaps reflecting weakened or reversed GC-biased gene conversion, a nonadaptive substitution process that is thought to be important in the maintenance and trajectory of isochore evolution. Our results demonstrate that GC composition in Anolis is not associated with important features of genome structure, including gene density and intron size, in contrast to patterns seen in mammal and bird genomes.
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.