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Initial sequencing and comparative analysis of the mouse genome

Authors
Robert Waterston,Kerstin Lindblad‐Toh
Ewan Birney,Jane Rogers,Josep Abril,Pankaj Agarwal,Richa Agarwala,R. Ainscough,Marina Alexandersson,Peter An,Stylianos Antonarakis,J. Attwood,Robert Baertsch,J. Bailey,K. Barlow,Stephan Beck,Eliot Berry,Bruce Birren,Toby Bloom,Peer Bork,M Botcherby,Nicolas Bray,Michael Brent,Daniel Brown,S. Brown,Carol Bult,John Burton,Jonathan Butler,R Campbell,Piero Carninci,Simon Cawley,Francesca Chiaromonte,Asif Chinwalla,Deanna Church,Michele Clamp,Christopher Clee,Francis Collins,Lisa Cook,Richard Copley,Alan Coulson,Olivier Couronne,James Cuff,Val Curwen,Tim Cutts,Mark Daly,Róbert Dávid,Joy Davies,Kimberly Delehaunty,Justin Deri,Emmanouil Dermitzakis,Colin Dewey,Nicholas Dickens,Mark Diekhans,Sheila Dodge,Inna Dubchak,Diane Dunn,Sean Eddy,Laura Elnitski,Richard Emes,Pallavi Eswara,Eduardo Eyras,Adam Felsenfeld,Ginger Fewell,Paul Flicek,Karen Foley,Wayne Frankel,Lucinda Fulton,Robert Fulton,Terrence Furey,Diane Gage,Richard Gibbs,Gustavo Glusman,Sante Gnerre,Nick Goldman,Leo Goodstadt,Darren Grafham,Tina Graves,Eric Green,Simon Gregory,Roderic Guigó,Mark Guyer,Ross Hardison,David Haussler,Yoshihide Hayashizaki,Deana LaHillier,Angie Hinrichs,Wratko Hlavina,Timothy Holzer,Fan Hsu,Axin Hua,Tim Hubbard,Adrienne Hunt,Ian Jackson,David Jaffe,L. Johnson,Matthew Jones,Thomas Jones,A. Joy,Michael Kamal,Elinor Karlsson,R Waterston,Marc Botcherby,S.D.M. Brown,R. Campbell,Michèle Clamp,J. Davies,LaDeana Hillier,Donna Karolchik,Arkadiusz Kasprzyk,Jun Kawai,Evan Keibler,Cristyn Kells,W. Kent,Andrew Kirby,Diana Kolbe,Ian Korf,Raju Kucherlapati,Edward Kulbokas,David Kulp,Tom Landers,J Leger,Steven Leonard,Ivica Letunić,Rosie Levine,Jia Li,Ming Li,Christine Lloyd,Susan Lucas,Bin Ma,Donna Maglott,Elaine Mardis,Lucy Matthews,Evan Mauceli,John Mayer,Megan McCarthy,W. McCombie,Stuart McLaren,Kirsten McLay,John McPherson,Jim Meldrim,Beverley Meredith,Jill Mesirov,Webb Miller,Tracie Miner,Emmanuel Mongin,Kate Montgomery,Michael Morgan,Richard Mott,James Mullikin,Donna Muzny,William Nash,Joanne Nelson,Michael Nhan,Robert Nicol,Zemin Ning,Chad Nusbaum,Michael O’Connor,Yasushi Okazaki,Karen Oliver,E. Overton-Larty,Lior Pachter,Genı́s Parra,Kymberlie Pepin,Jane Peterson,Pavel Pevzner,R. Plumb,Craig Pohl,Alex Poliakov,Tracy Ponce,Chris Ponting,Simon Potter,Michael Quail,Alexandre Reymond,Bruce Roe,Krishna Roskin,Edward Rubin,Alistair Rust,Ralph Santos,Victor Sapojnikov,Brian Schultz,Jörg Schultz,Matthias Schwartz,Scott Schwartz,Carol Scott,Steven Seaman,Steve Searle,Ted Sharpe,Andrew Sheridan,R. Shownkeen,Sarah Sims,Jonathan Singer,Guy Slater,Arian Smit,Douglas Smith,Brian Spencer,Arne Stabenau,Nicole Stange-Thomann,Charles Sugnet,Mikita Suyama,Glenn Tesler,J.E. Thompson,David Torrents,E. Trevaskis,John Tromp,Catherine Ucla,Abel Ureta‐Vidal,Jade Vinson,Andrew Niederhausern,Claire Wade,M. Wall,Ryan Weber,Robert Weiss,Michael Wendl,Anthony West,Kris Wetterstrand,Raymond Wheeler,Simon Whelan,Jamey Wierzbowski,David Willey,S. Williams,Richard Wilson,Eitan Winter,Kim Worley,Dudley Wyman,Shan Yang,Shiaw Yang,Evgeny Zdobnov,Michael Zody
+226 authors
,Eric Lander
Journal
Published
Dec 1, 2002
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Abstract

The sequence of the mouse genome is a key informational tool for understanding the contents of the human genome and a key experimental tool for biomedical research. Here, we report the results of an international collaboration to produce a high-quality draft sequence of the mouse genome. We also present an initial comparative analysis of the mouse and human genomes, describing some of the insights that can be gleaned from the two sequences. We discuss topics including the analysis of the evolutionary forces shaping the size, structure and sequence of the genomes; the conservation of large-scale synteny across most of the genomes; the much lower extent of sequence orthology covering less than half of the genomes; the proportions of the genomes under selection; the number of protein-coding genes; the expansion of gene families related to reproduction and immunity; the evolution of proteins; and the identification of intraspecies polymorphism.

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