The genome of the green anole lizard and a comparative analysis with birds and mammals.

dc.contributor.author

Alföldi, Jessica

dc.contributor.author

Di Palma, Federica

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Grabherr, Manfred

dc.contributor.author

Williams, Christina

dc.contributor.author

Kong, Lesheng

dc.contributor.author

Mauceli, Evan

dc.contributor.author

Russell, Pamela

dc.contributor.author

Lowe, Craig B

dc.contributor.author

Glor, Richard E

dc.contributor.author

Jaffe, Jacob D

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Ray, David A

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Boissinot, Stephane

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Shedlock, Andrew M

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Botka, Christopher

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Castoe, Todd A

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Colbourne, John K

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Fujita, Matthew K

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Moreno, Ricardo Godinez

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ten Hallers, Boudewijn F

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Haussler, David

dc.contributor.author

Heger, Andreas

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Heiman, David

dc.contributor.author

Janes, Daniel E

dc.contributor.author

Johnson, Jeremy

dc.contributor.author

de Jong, Pieter J

dc.contributor.author

Koriabine, Maxim Y

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Lara, Marcia

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Novick, Peter A

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Organ, Chris L

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Peach, Sally E

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Poe, Steven

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Pollock, David D

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de Queiroz, Kevin

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Sanger, Thomas

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Searle, Steve

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Smith, Jeremy D

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Smith, Zachary

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Swofford, Ross

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Turner-Maier, Jason

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Wade, Juli

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Young, Sarah

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Zadissa, Amonida

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Edwards, Scott V

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Glenn, Travis C

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Schneider, Christopher J

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Losos, Jonathan B

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Lander, Eric S

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Breen, Matthew

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Ponting, Chris P

dc.contributor.author

Lindblad-Toh, Kerstin

dc.date.accessioned

2018-09-13T14:40:49Z

dc.date.available

2018-09-13T14:40:49Z

dc.date.issued

2011-08-31

dc.date.updated

2018-09-13T14:40:48Z

dc.description.abstract

The 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.

dc.identifier.issn

0028-0836

dc.identifier.issn

1476-4687

dc.identifier.uri

https://hdl.handle.net/10161/17407

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

dc.relation.ispartof

Nature

dc.relation.isversionof

10.1038/nature10390

dc.subject

X Chromosome

dc.subject

Animals

dc.subject

Birds

dc.subject

Chickens

dc.subject

Mammals

dc.subject

Humans

dc.subject

Lizards

dc.subject

Genomics

dc.subject

Evolution, Molecular

dc.subject

Phylogeny

dc.subject

GC Rich Sequence

dc.subject

Synteny

dc.subject

Genome

dc.subject

Molecular Sequence Data

dc.title

The genome of the green anole lizard and a comparative analysis with birds and mammals.

dc.type

Journal article

duke.contributor.orcid

Lowe, Craig B|0000-0002-6838-1976

pubs.begin-page

587

pubs.end-page

591

pubs.issue

7366

pubs.organisational-group

School of Medicine

pubs.organisational-group

Duke

pubs.organisational-group

Molecular Genetics and Microbiology

pubs.organisational-group

Basic Science Departments

pubs.publication-status

Published

pubs.volume

477

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