Author Report for: Mehta T No contact information in database for Mehta T
Title: High quality draft genome sequence of Segniliparus rugosus CDC 945(T)= (ATCC BAA-974(T))
Earl AM , Desjardins CA , Fitzgerald MG , Arachchi HM , Zeng Q , Mehta T , Griggs A , Birren BW , Toney NC and Butler WR <2 more author(s)>
Earl AM , Desjardins CA , Fitzgerald MG , Arachchi HM , Zeng Q , Mehta T , Griggs A , Birren BW , Toney NC , Carr J , Posey J , Butler WR (- 2)
Ref: Stand Genomic Sci, 5 :389, 2011 : PubMed Abstract ESTHER: Earl_2011_Stand.Genomic.Sci_5_389 PubMedSearch: Earl 2011 Stand.Genomic.Sci 5 389 PubMedID: 22675588 Gene_locus related to this paper: 9acto-e5xtw5 ,
9acto-e5xpt7 ,
9acto-e5xpt8 ,
9acto-e5xue1 ,
9acto-e5xr49 ,
9actn-e5xql0 Abstract
Segniliparus rugosus represents one of two species in the genus Segniliparus, the sole genus in the family Segniliparaceae. A unique and interesting feature of this family is the presence of extremely long carbon-chain length mycolic acids bound in the cell wall. S. rugosus is also a medically important species because it is an opportunistic pathogen associated with mammalian lung disease. This report represents the second species in the genus to have its genome sequenced. The 3,567,567 bp long genome with 3,516 protein-coding and 49 RNA genes is part of the NIH Roadmap for Medical Research, Human Microbiome Project.
         Title: A catalog of reference genomes from the human microbiome
Nelson KE , Weinstock GM , Highlander SK , Worley KC , Creasy HH , Wortman JR , Rusch DB , Mitreva M , Sodergren E and Zhu D <73 more author(s)>
Nelson KE , Weinstock GM , Highlander SK , Worley KC , Creasy HH , Wortman JR , Rusch DB , Mitreva M , Sodergren E , Chinwalla AT , Feldgarden M , Gevers D , Haas BJ , Madupu R , Ward DV , Birren BW , Gibbs RA , Methe B , Petrosino JF , Strausberg RL , Sutton GG , White OR , Wilson RK , Durkin S , Giglio MG , Gujja S , Howarth C , Kodira CD , Kyrpides N , Mehta T , Muzny DM , Pearson M , Pepin K , Pati A , Qin X , Yandava C , Zeng Q , Zhang L , Berlin AM , Chen L , Hepburn TA , Johnson J , McCorrison J , Miller J , Minx P , Nusbaum C , Russ C , Sykes SM , Tomlinson CM , Young S , Warren WC , Badger J , Crabtree J , Markowitz VM , Orvis J , Cree A , Ferriera S , Fulton LL , Fulton RS , Gillis M , Hemphill LD , Joshi V , Kovar C , Torralba M , Wetterstrand KA , Abouellleil A , Wollam AM , Buhay CJ , Ding Y , Dugan S , Fitzgerald MG , Holder M , Hostetler J , Clifton SW , Allen-Vercoe E , Earl AM , Farmer CN , Liolios K , Surette MG , Xu Q , Pohl C , Wilczek-Boney K , Zhu D (- 73)
Ref: Science, 328 :994, 2010 : PubMed Abstract ESTHER: Nelson_2010_Science_328_994 PubMedSearch: Nelson 2010 Science 328 994 PubMedID: 20489017 Gene_locus related to this paper: strp2-q04l35 ,
strpn-AXE1 ,
strpn-pepx Abstract
The human microbiome refers to the community of microorganisms, including prokaryotes, viruses, and microbial eukaryotes, that populate the human body. The National Institutes of Health launched an initiative that focuses on describing the diversity of microbial species that are associated with health and disease. The first phase of this initiative includes the sequencing of hundreds of microbial reference genomes, coupled to metagenomic sequencing from multiple body sites. Here we present results from an initial reference genome sequencing of 178 microbial genomes. From 547,968 predicted polypeptides that correspond to the gene complement of these strains, previously unidentified ("novel") polypeptides that had both unmasked sequence length greater than 100 amino acids and no BLASTP match to any nonreference entry in the nonredundant subset were defined. This analysis resulted in a set of 30,867 polypeptides, of which 29,987 (approximately 97%) were unique. In addition, this set of microbial genomes allows for approximately 40% of random sequences from the microbiome of the gastrointestinal tract to be associated with organisms based on the match criteria used. Insights into pan-genome analysis suggest that we are still far from saturating microbial species genetic data sets. In addition, the associated metrics and standards used by our group for quality assurance are presented.
         Title: Evolution of genes and genomes on the Drosophila phylogeny
Clark AG , Eisen MB , Smith DR , Bergman CM , Oliver B , Markow TA , Kaufman TC , Kellis M , Gelbart W and MacCallum I <405 more author(s)>
Clark AG , Eisen MB , Smith DR , Bergman CM , Oliver B , Markow TA , Kaufman TC , Kellis M , Gelbart W , Iyer VN , Pollard DA , Sackton TB , Larracuente AM , Singh ND , Abad JP , Abt DN , Adryan B , Aguade M , Akashi H , Anderson WW , Aquadro CF , Ardell DH , Arguello R , Artieri CG , Barbash DA , Barker D , Barsanti P , Batterham P , Batzoglou S , Begun D , Bhutkar A , Blanco E , Bosak SA , Bradley RK , Brand AD , Brent MR , Brooks AN , Brown RH , Butlin RK , Caggese C , Calvi BR , Bernardo de Carvalho A , Caspi A , Castrezana S , Celniker SE , Chang JL , Chapple C , Chatterji S , Chinwalla A , Civetta A , Clifton SW , Comeron JM , Costello JC , Coyne JA , Daub J , David RG , Delcher AL , Delehaunty K , Do CB , Ebling H , Edwards K , Eickbush T , Evans JD , Filipski A , Findeiss S , Freyhult E , Fulton L , Fulton R , Garcia AC , Gardiner A , Garfield DA , Garvin BE , Gibson G , Gilbert D , Gnerre S , Godfrey J , Good R , Gotea V , Gravely B , Greenberg AJ , Griffiths-Jones S , Gross S , Guigo R , Gustafson EA , Haerty W , Hahn MW , Halligan DL , Halpern AL , Halter GM , Han MV , Heger A , Hillier L , Hinrichs AS , Holmes I , Hoskins RA , Hubisz MJ , Hultmark D , Huntley MA , Jaffe DB , Jagadeeshan S , Jeck WR , Johnson J , Jones CD , Jordan WC , Karpen GH , Kataoka E , Keightley PD , Kheradpour P , Kirkness EF , Koerich LB , Kristiansen K , Kudrna D , Kulathinal RJ , Kumar S , Kwok R , Lander E , Langley CH , Lapoint R , Lazzaro BP , Lee SJ , Levesque L , Li R , Lin CF , Lin MF , Lindblad-Toh K , Llopart A , Long M , Low L , Lozovsky E , Lu J , Luo M , Machado CA , Makalowski W , Marzo M , Matsuda M , Matzkin L , McAllister B , McBride CS , McKernan B , McKernan K , Mendez-Lago M , Minx P , Mollenhauer MU , Montooth K , Mount SM , Mu X , Myers E , Negre B , Newfeld S , Nielsen R , Noor MA , O'Grady P , Pachter L , Papaceit M , Parisi MJ , Parisi M , Parts L , Pedersen JS , Pesole G , Phillippy AM , Ponting CP , Pop M , Porcelli D , Powell JR , Prohaska S , Pruitt K , Puig M , Quesneville H , Ram KR , Rand D , Rasmussen MD , Reed LK , Reenan R , Reily A , Remington KA , Rieger TT , Ritchie MG , Robin C , Rogers YH , Rohde C , Rozas J , Rubenfield MJ , Ruiz A , Russo S , Salzberg SL , Sanchez-Gracia A , Saranga DJ , Sato H , Schaeffer SW , Schatz MC , Schlenke T , Schwartz R , Segarra C , Singh RS , Sirot L , Sirota M , Sisneros NB , Smith CD , Smith TF , Spieth J , Stage DE , Stark A , Stephan W , Strausberg RL , Strempel S , Sturgill D , Sutton G , Sutton GG , Tao W , Teichmann S , Tobari YN , Tomimura Y , Tsolas JM , Valente VL , Venter E , Venter JC , Vicario S , Vieira FG , Vilella AJ , Villasante A , Walenz B , Wang J , Wasserman M , Watts T , Wilson D , Wilson RK , Wing RA , Wolfner MF , Wong A , Wong GK , Wu CI , Wu G , Yamamoto D , Yang HP , Yang SP , Yorke JA , Yoshida K , Zdobnov E , Zhang P , Zhang Y , Zimin AV , Baldwin J , Abdouelleil A , Abdulkadir J , Abebe A , Abera B , Abreu J , Acer SC , Aftuck L , Alexander A , An P , Anderson E , Anderson S , Arachi H , Azer M , Bachantsang P , Barry A , Bayul T , Berlin A , Bessette D , Bloom T , Blye J , Boguslavskiy L , Bonnet C , Boukhgalter B , Bourzgui I , Brown A , Cahill P , Channer S , Cheshatsang Y , Chuda L , Citroen M , Collymore A , Cooke P , Costello M , D'Aco K , Daza R , De Haan G , DeGray S , DeMaso C , Dhargay N , Dooley K , Dooley E , Doricent M , Dorje P , Dorjee K , Dupes A , Elong R , Falk J , Farina A , Faro S , Ferguson D , Fisher S , Foley CD , Franke A , Friedrich D , Gadbois L , Gearin G , Gearin CR , Giannoukos G , Goode T , Graham J , Grandbois E , Grewal S , Gyaltsen K , Hafez N , Hagos B , Hall J , Henson C , Hollinger A , Honan T , Huard MD , Hughes L , Hurhula B , Husby ME , Kamat A , Kanga B , Kashin S , Khazanovich D , Kisner P , Lance K , Lara M , Lee W , Lennon N , Letendre F , LeVine R , Lipovsky A , Liu X , Liu J , Liu S , Lokyitsang T , Lokyitsang Y , Lubonja R , Lui A , Macdonald P , Magnisalis V , Maru K , Matthews C , McCusker W , McDonough S , Mehta T , Meldrim J , Meneus L , Mihai O , Mihalev A , Mihova T , Mittelman R , Mlenga V , Montmayeur A , Mulrain L , Navidi A , Naylor J , Negash T , Nguyen T , Nguyen N , Nicol R , Norbu C , Norbu N , Novod N , O'Neill B , Osman S , Markiewicz E , Oyono OL , Patti C , Phunkhang P , Pierre F , Priest M , Raghuraman S , Rege F , Reyes R , Rise C , Rogov P , Ross K , Ryan E , Settipalli S , Shea T , Sherpa N , Shi L , Shih D , Sparrow T , Spaulding J , Stalker J , Stange-Thomann N , Stavropoulos S , Stone C , Strader C , Tesfaye S , Thomson T , Thoulutsang Y , Thoulutsang D , Topham K , Topping I , Tsamla T , Vassiliev H , Vo A , Wangchuk T , Wangdi T , Weiand M , Wilkinson J , Wilson A , Yadav S , Young G , Yu Q , Zembek L , Zhong D , Zimmer A , Zwirko Z , Alvarez P , Brockman W , Butler J , Chin C , Grabherr M , Kleber M , Mauceli E , MacCallum I (- 405)
Ref: Nature, 450 :203, 2007 : PubMed Abstract ESTHER: Clark_2007_Nature_450_203 PubMedSearch: Clark 2007 Nature 450 203 PubMedID: 17994087 Gene_locus related to this paper: droan-ACHE ,
droan-b3lx10 ,
droan-b3lx75 ,
droan-b3lxv7 ,
droan-b3ly87 ,
droan-b3lyh4 ,
droan-b3lyh5 ,
droan-b3lyh7 ,
droan-b3lyh9 ,
droan-b3lyi0 ,
droan-b3lyi2 ,
droan-b3lyi3 ,
droan-b3lyi4 ,
droan-b3lyj8 ,
droan-b3lyj9 ,
droan-b3lyx4 ,
droan-b3lyx5 ,
droan-b3lyx6 ,
droan-b3lyx7 ,
droan-b3lyx9 ,
droan-b3lz72 ,
droan-b3m1x3 ,
droan-b3m2d4 ,
droan-b3m3d9 ,
droan-b3m4e3 ,
droan-b3m5w1 ,
droan-b3m6i7 ,
droan-b3m7v2 ,
droan-b3m9a5 ,
droan-b3m9f4 ,
droan-b3m9p3 ,
droan-b3m254 ,
droan-b3m259 ,
droan-b3m260 ,
droan-b3m262 ,
droan-b3m524 ,
droan-b3m635 ,
droan-b3m845 ,
droan-b3m846 ,
droan-b3md01 ,
droan-b3mdh7 ,
droan-b3mdm6 ,
droan-b3mdw8 ,
droan-b3mee1 ,
droan-b3mf47 ,
droan-b3mf48 ,
droan-b3mg94 ,
droan-b3mgk2 ,
droan-b3mgn6 ,
droan-b3mii3 ,
droan-b3mjk2 ,
droan-b3mjk3 ,
droan-b3mjk4 ,
droan-b3mjk5 ,
droan-b3mjl2 ,
droan-b3mjl4 ,
droan-b3mjl7 ,
droan-b3mjl9 ,
droan-b3mjm8 ,
droan-b3mjm9 ,
droan-b3mjs6 ,
droan-b3mkr0 ,
droan-b3ml20 ,
droan-b3mly4 ,
droan-b3mly5 ,
droan-b3mly6 ,
droan-b3mmm8 ,
droan-b3mnb5 ,
droan-b3mny9 ,
droan-b3mtj5 ,
droan-b3muw4 ,
droan-b3muw8 ,
droan-b3n0e7 ,
droan-b3n2j7 ,
droan-b3n247 ,
droan-c5idb2 ,
droer-ACHE ,
droer-b3n5c7 ,
droer-b3n5d0 ,
droer-b3n5d8 ,
droer-b3n5d9 ,
droer-b3n5t7 ,
droer-b3n5y4 ,
droer-b3n7d2 ,
droer-b3n7d3 ,
droer-b3n7d4 ,
droer-b3n7k8 ,
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droer-b3n8f8 ,
droer-b3n9e1 ,
droer-b3n319 ,
droer-b3n547 ,
droer-b3n549 ,
droer-b3n558 ,
droer-b3n560 ,
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droer-b3n612 ,
droer-b3nar5 ,
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droer-b3nct9 ,
droer-b3nd53 ,
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droer-b3nfk3 ,
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droer-b3nim7 ,
droer-b3nkn2 ,
droer-b3nm11 ,
droer-b3nmh4 ,
droer-b3nmy2 ,
droer-b3npx2 ,
droer-b3npx3 ,
droer-b3nq76 ,
droer-b3nqg9 ,
droer-b3nqm8 ,
droer-b3nr28 ,
droer-b3nrd3 ,
droer-b3nst4 ,
droer-b3nwa7 ,
droer-b3nyp5.1 ,
droer-b3nyp5.2 ,
droer-b3nyp6 ,
droer-b3nyp7 ,
droer-b3nyp8 ,
droer-b3nyp9 ,
droer-b3nyq3 ,
droer-b3nz06 ,
droer-b3nz14 ,
droer-b3nzj0 ,
droer-b3p0c0 ,
droer-b3p0c1 ,
droer-b3p0c2 ,
droer-b3p2x6 ,
droer-b3p2x7 ,
droer-b3p2x9 ,
droer-b3p2y1 ,
droer-b3p2y2 ,
droer-b3p6d4 ,
droer-b3p6d5 ,
droer-b3p6w3 ,
droer-b3p7b4 ,
droer-b3p7h9 ,
droer-b3p152 ,
droer-b3p486 ,
droer-b3p487 ,
droer-b3p488 ,
droer-b3p489 ,
droer-EST6 ,
droer-q670j5 ,
drogr-ACHE ,
drogr-b4iwp3 ,
drogr-b4iww3 ,
drogr-b4iwy3 ,
drogr-b4ixf7 ,
drogr-b4ixh4 ,
drogr-b4iyz5 ,
drogr-b4j2s2 ,
drogr-b4j2u8 ,
drogr-b4j3u1 ,
drogr-b4j3v3 ,
drogr-b4j4g7 ,
drogr-b4j4x9 ,
drogr-b4j6e6 ,
drogr-b4j9c9 ,
drogr-b4j9y4 ,
drogr-b4j156 ,
drogr-b4j384 ,
drogr-b4j605 ,
drogr-b4j685 ,
drogr-b4ja76 ,
drogr-b4jay5 ,
drogr-b4jcf0 ,
drogr-b4jcf1 ,
drogr-b4jdg6 ,
drogr-b4jdg7 ,
drogr-b4jdh6 ,
drogr-b4jdz1 ,
drogr-b4jdz2 ,
drogr-b4jdz4 ,
drogr-b4je66 ,
drogr-b4je79 ,
drogr-b4je82 ,
drogr-b4je88 ,
drogr-b4je89 ,
drogr-b4je90 ,
drogr-b4je91 ,
drogr-b4jf76 ,
drogr-b4jf79 ,
drogr-b4jf80 ,
drogr-b4jf81 ,
drogr-b4jf82 ,
drogr-b4jf83 ,
drogr-b4jf84 ,
drogr-b4jf85 ,
drogr-b4jf87 ,
drogr-b4jf91 ,
drogr-b4jf92 ,
drogr-b4jg66 ,
drogr-b4jgh0 ,
drogr-b4jgh1 ,
drogr-b4jgr9 ,
drogr-b4ji67 ,
drogr-b4jls2 ,
drogr-b4jnh9 ,
drogr-b4jpc6 ,
drogr-b4jpq3 ,
drogr-b4jpx9 ,
drogr-b4jql2 ,
drogr-b4jrh5 ,
drogr-b4jsb2 ,
drogr-b4jth3 ,
drogr-b4jti1 ,
drogr-b4jul5 ,
drogr-b4jur4 ,
drogr-b4jvh3 ,
drogr-b4jz00 ,
drogr-b4jz03 ,
drogr-b4jz04 ,
drogr-b4jz05 ,
drogr-b4jzh2 ,
drogr-b4k0u2 ,
drogr-b4k2r1 ,
drogr-b4k234 ,
drogr-b4k235 ,
drome-BEM46 ,
drome-CG3734 ,
drome-CG9953 ,
drome-CG11626 ,
drome-GH02439 ,
dromo-ACHE ,
dromo-b4k6a7 ,
dromo-b4k6a8 ,
dromo-b4k6q8 ,
dromo-b4k6q9 ,
dromo-b4k6r1 ,
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dromo-b4k9d3 ,
dromo-b4k571 ,
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droya-b4plh2 ,
droya-b4pma3 ,
droya-b4pmv3 ,
droya-b4pmv4 ,
droya-b4pmv5 ,
droya-b4pn92 ,
droya-b4pp65 ,
droya-b4ppc5 ,
droya-b4ppc6 ,
droya-b4ppc7 ,
droya-b4ppc8 ,
droya-b4pq03 ,
droya-b4prg6B ,
droya-b4prg9 ,
droya-b4prh3 ,
droya-b4prh4 ,
droya-b4prh6 ,
droya-b4prh7 ,
droya-b4psz8 ,
droya-b4psz9 ,
droya-b4pv22 ,
droya-b4q0g5 ,
droya-b4q246 ,
droya-EST6 ,
droya-q71d76 ,
drowi-b4n7m9 ,
drope-b4gkk1 ,
droer-b3n5s3 ,
drose-b4i1w5 ,
drowi-a0a0q9x0t3 ,
drogr-b4jvm7 ,
dromo-b4ku70 ,
drovi-b4mcn9 ,
drovi-b4lty2 ,
drogr-b4jdu1 ,
drovi-a0a0q9wiq8 ,
dromo-b4kf70 ,
drosi-b2zi86 ,
droya-b4p2y4 ,
drose-b2zic5 ,
droer-b3n895 Abstract
Comparative analysis of multiple genomes in a phylogenetic framework dramatically improves the precision and sensitivity of evolutionary inference, producing more robust results than single-genome analyses can provide. The genomes of 12 Drosophila species, ten of which are presented here for the first time (sechellia, simulans, yakuba, erecta, ananassae, persimilis, willistoni, mojavensis, virilis and grimshawi), illustrate how rates and patterns of sequence divergence across taxa can illuminate evolutionary processes on a genomic scale. These genome sequences augment the formidable genetic tools that have made Drosophila melanogaster a pre-eminent model for animal genetics, and will further catalyse fundamental research on mechanisms of development, cell biology, genetics, disease, neurobiology, behaviour, physiology and evolution. Despite remarkable similarities among these Drosophila species, we identified many putatively non-neutral changes in protein-coding genes, non-coding RNA genes, and cis-regulatory regions. These may prove to underlie differences in the ecology and behaviour of these diverse species.
         Title: Genome sequence, comparative analysis and haplotype structure of the domestic dog
Lindblad-Toh K , Wade CM , Mikkelsen TS , Karlsson EK , Jaffe DB , Kamal M , Clamp M , Chang JL , Kulbokas EJ, 3rd and Lander ES <224 more author(s)>
Lindblad-Toh K , Wade CM , Mikkelsen TS , Karlsson EK , Jaffe DB , Kamal M , Clamp M , Chang JL , Kulbokas EJ, 3rd , Zody MC , Mauceli E , Xie X , Breen M , Wayne RK , Ostrander EA , Ponting CP , Galibert F , Smith DR , deJong PJ , Kirkness E , Alvarez P , Biagi T , Brockman W , Butler J , Chin CW , Cook A , Cuff J , Daly MJ , Decaprio D , Gnerre S , Grabherr M , Kellis M , Kleber M , Bardeleben C , Goodstadt L , Heger A , Hitte C , Kim L , Koepfli KP , Parker HG , Pollinger JP , Searle SM , Sutter NB , Thomas R , Webber C , Baldwin J , Abebe A , Abouelleil A , Aftuck L , Ait-Zahra M , Aldredge T , Allen N , An P , Anderson S , Antoine C , Arachchi H , Aslam A , Ayotte L , Bachantsang P , Barry A , Bayul T , Benamara M , Berlin A , Bessette D , Blitshteyn B , Bloom T , Blye J , Boguslavskiy L , Bonnet C , Boukhgalter B , Brown A , Cahill P , Calixte N , Camarata J , Cheshatsang Y , Chu J , Citroen M , Collymore A , Cooke P , Dawoe T , Daza R , Decktor K , DeGray S , Dhargay N , Dooley K , Dorje P , Dorjee K , Dorris L , Duffey N , Dupes A , Egbiremolen O , Elong R , Falk J , Farina A , Faro S , Ferguson D , Ferreira P , Fisher S , FitzGerald M , Foley K , Foley C , Franke A , Friedrich D , Gage D , Garber M , Gearin G , Giannoukos G , Goode T , Goyette A , Graham J , Grandbois E , Gyaltsen K , Hafez N , Hagopian D , Hagos B , Hall J , Healy C , Hegarty R , Honan T , Horn A , Houde N , Hughes L , Hunnicutt L , Husby M , Jester B , Jones C , Kamat A , Kanga B , Kells C , Khazanovich D , Kieu AC , Kisner P , Kumar M , Lance K , Landers T , Lara M , Lee W , Leger JP , Lennon N , Leuper L , LeVine S , Liu J , Liu X , Lokyitsang Y , Lokyitsang T , Lui A , MacDonald J , Major J , Marabella R , Maru K , Matthews C , McDonough S , Mehta T , Meldrim J , Melnikov A , Meneus L , Mihalev A , Mihova T , Miller K , Mittelman R , Mlenga V , Mulrain L , Munson G , Navidi A , Naylor J , Nguyen T , Nguyen N , Nguyen C , Nicol R , Norbu N , Norbu C , Novod N , Nyima T , Olandt P , O'Neill B , O'Neill K , Osman S , Oyono L , Patti C , Perrin D , Phunkhang P , Pierre F , Priest M , Rachupka A , Raghuraman S , Rameau R , Ray V , Raymond C , Rege F , Rise C , Rogers J , Rogov P , Sahalie J , Settipalli S , Sharpe T , Shea T , Sheehan M , Sherpa N , Shi J , Shih D , Sloan J , Smith C , Sparrow T , Stalker J , Stange-Thomann N , Stavropoulos S , Stone C , Stone S , Sykes S , Tchuinga P , Tenzing P , Tesfaye S , Thoulutsang D , Thoulutsang Y , Topham K , Topping I , Tsamla T , Vassiliev H , Venkataraman V , Vo A , Wangchuk T , Wangdi T , Weiand M , Wilkinson J , Wilson A , Yadav S , Yang S , Yang X , Young G , Yu Q , Zainoun J , Zembek L , Zimmer A , Lander ES (- 224)
Ref: Nature, 438 :803, 2005 : PubMed Abstract ESTHER: Lindblad-Toh_2005_Nature_438_803 PubMedSearch: Lindblad-Toh 2005 Nature 438 803 PubMedID: 16341006 Gene_locus related to this paper: canfa-1lipg ,
canfa-2neur ,
canfa-3neur ,
canfa-ACHE ,
canfa-BCHE ,
canfa-cauxin ,
canfa-CESDD1 ,
canfa-e2qsb1 ,
canfa-e2qsl3 ,
canfa-e2qsz2 ,
canfa-e2qvk3 ,
canfa-e2qw15 ,
canfa-e2qxs8 ,
canfa-e2qzs6 ,
canfa-e2r5t3 ,
canfa-e2r6f6 ,
canfa-e2r7e8 ,
canfa-e2r8v9 ,
canfa-e2r8z1 ,
canfa-e2r9h4 ,
canfa-e2r455 ,
canfa-e2rb70 ,
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canfa-f1p6w8 ,
canfa-f1p8b6 ,
canfa-f1p9d8 ,
canfa-f1p683 ,
canfa-f1pb79 ,
canfa-f1pgw0 ,
canfa-f1phd0 ,
canfa-f1phx2 ,
canfa-f1pke8 ,
canfa-f1pp08 ,
canfa-f1ppp9 ,
canfa-f1ps07 ,
canfa-f1ptf1 ,
canfa-f1pvp4 ,
canfa-f1pw93 ,
canfa-f1pwk3 ,
canfa-pafa ,
canfa-q1ert3 ,
canfa-q5jzr0 ,
canfa-e2rmb9 ,
canlf-f6v865 ,
canlf-e2rjg6 ,
canlf-e2r2h2 ,
canlf-f1p648 ,
canlf-f1pw90 ,
canlf-j9p8v6 ,
canlf-f1pcc4 ,
canlf-e2qxh0 ,
canlf-e2r774 ,
canlf-f1pf96 ,
canlf-e2rq56 ,
canlf-j9nwb1 ,
canlf-f1ptw2 ,
canlf-j9p8h1 ,
canlf-e2ree2 ,
canlf-f1prs1 ,
canlf-j9nus1 ,
canlf-e2rf91 ,
canlf-f1pg57 ,
canlf-f1q111 Abstract
Here we report a high-quality draft genome sequence of the domestic dog (Canis familiaris), together with a dense map of single nucleotide polymorphisms (SNPs) across breeds. The dog is of particular interest because it provides important evolutionary information and because existing breeds show great phenotypic diversity for morphological, physiological and behavioural traits. We use sequence comparison with the primate and rodent lineages to shed light on the structure and evolution of genomes and genes. Notably, the majority of the most highly conserved non-coding sequences in mammalian genomes are clustered near a small subset of genes with important roles in development. Analysis of SNPs reveals long-range haplotypes across the entire dog genome, and defines the nature of genetic diversity within and across breeds. The current SNP map now makes it possible for genome-wide association studies to identify genes responsible for diseases and traits, with important consequences for human and companion animal health.