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Whole Genome Metabolism - Anopheles gambiae str. PEST


ABSTRACT:

Whole Genome Metabolism of "Anopheles gambiae str. PEST"
This is a whole genome metabolism model of Anopheles gambiae str. PEST.
This model has been automatically generated by the SuBliMinaL Toolbox and libAnnotationSBML using information coming from from KEGG (release 66, April 2013, accessed via the resource's web services interface) and, where relevant, augmented with metabolic pathway information extracted from MetaCyc (version 17.0, March 2013).
This model has been produced by the path2models project and is currently hosted on BioModels Database and identified by: BMID000000141627 .
Other models with the same genus include BMID000000003873 BMID000000003874 BMID000000003875 BMID000000003876 BMID000000003877 BMID000000003878 BMID000000003879 BMID000000003880 BMID000000003881 BMID000000003882 BMID000000003883 BMID000000003884 BMID000000003885 BMID000000003886 BMID000000003887 BMID000000003888 BMID000000003889 BMID000000003890 BMID000000003891 BMID000000003892 BMID000000003893 BMID000000003894 BMID000000003895 BMID000000003896 BMID000000003897 BMID000000003898 BMID000000003899 BMID000000003900 BMID000000003901 BMID000000003902 BMID000000003903 BMID000000003904 BMID000000003905 BMID000000003906 BMID000000003907 BMID000000003908 BMID000000003909 BMID000000003910 BMID000000003911 BMID000000003912 BMID000000003913 BMID000000003914 BMID000000044013 BMID000000044014 BMID000000044015 BMID000000044016 BMID000000044017 BMID000000044018 BMID000000044019 BMID000000044020 BMID000000044021 BMID000000044022 BMID000000044023 BMID000000044024 BMID000000044025 BMID000000044026 BMID000000044027 BMID000000044028 BMID000000044029 BMID000000044030 BMID000000044031 BMID000000044032 BMID000000044033 BMID000000044034 BMID000000044035 BMID000000044036 BMID000000044037 BMID000000044038 BMID000000044039 BMID000000044040 BMID000000044041 BMID000000044042 BMID000000044043 BMID000000044044 BMID000000044045 BMID000000044046 BMID000000044047 BMID000000044048 BMID000000044049 BMID000000044050 BMID000000044051 BMID000000044052 BMID000000044053 BMID000000044054 BMID000000044055 BMID000000044056 BMID000000044057 BMID000000044058 BMID000000044059 BMID000000044060 BMID000000044061 BMID000000044062 BMID000000044063 BMID000000044064 BMID000000044065 BMID000000044066 BMID000000044067 BMID000000044068 BMID000000044069 BMID000000044070 BMID000000044071 BMID000000044072 BMID000000044073 BMID000000044074 BMID000000044075 BMID000000044076 BMID000000044077 BMID000000044078 BMID000000044079 BMID000000044080 BMID000000044081 BMID000000044082 BMID000000044083 BMID000000044084 BMID000000044085 BMID000000044086 BMID000000044087 BMID000000044088 BMID000000044089 BMID000000044090 BMID000000044091 BMID000000044092 BMID000000044093 BMID000000044094 BMID000000044095 BMID000000044096 .
To the extent possible under law, all copyright and related or neighbouring rights to this encoded model have been dedicated to the public domain worldwide. Please refer to CC0 Public Domain Dedication for more information.

SUBMITTER: Path2Models project 

PROVIDER: BMID000000141627 | biostudies-other |

SECONDARY ACCESSION(S): 24180668

REPOSITORIES: biostudies-other

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Publications

The genome sequence of the malaria mosquito Anopheles gambiae.

Holt Robert A RA   Subramanian G Mani GM   Halpern Aaron A   Sutton Granger G GG   Charlab Rosane R   Nusskern Deborah R DR   Wincker Patrick P   Clark Andrew G AG   Ribeiro José M C JM   Wides Ron R   Salzberg Steven L SL   Loftus Brendan B   Yandell Mark M   Majoros William H WH   Rusch Douglas B DB   Lai Zhongwu Z   Kraft Cheryl L CL   Abril Josep F JF   Anthouard Veronique V   Arensburger Peter P   Atkinson Peter W PW   Baden Holly H   de Berardinis Veronique V   Baldwin Danita D   Benes Vladimir V   Biedler Jim J   Blass Claudia C   Bolanos Randall R   Boscus Didier D   Barnstead Mary M   Cai Shuang S   Center Angela A   Chaturverdi Kabir K   Christophides George K GK   Chrystal Mathew A MA   Clamp Michele M   Cravchik Anibal A   Curwen Val V   Dana Ali A   Delcher Art A   Dew Ian I   Evans Cheryl A CA   Flanigan Michael M   Grundschober-Freimoser Anne A   Friedli Lisa L   Gu Zhiping Z   Guan Ping P   Guigo Roderic R   Hillenmeyer Maureen E ME   Hladun Susanne L SL   Hogan James R JR   Hong Young S YS   Hoover Jeffrey J   Jaillon Olivier O   Ke Zhaoxi Z   Kodira Chinnappa C   Kokoza Elena E   Koutsos Anastasios A   Letunic Ivica I   Levitsky Alex A   Liang Yong Y   Lin Jhy-Jhu JJ   Lobo Neil F NF   Lopez John R JR   Malek Joel A JA   McIntosh Tina C TC   Meister Stephan S   Miller Jason J   Mobarry Clark C   Mongin Emmanuel E   Murphy Sean D SD   O'Brochta David A DA   Pfannkoch Cynthia C   Qi Rong R   Regier Megan A MA   Remington Karin K   Shao Hongguang H   Sharakhova Maria V MV   Sitter Cynthia D CD   Shetty Jyoti J   Smith Thomas J TJ   Strong Renee R   Sun Jingtao J   Thomasova Dana D   Ton Lucas Q LQ   Topalis Pantelis P   Tu Zhijian Z   Unger Maria F MF   Walenz Brian B   Wang Aihui A   Wang Jian J   Wang Mei M   Wang Xuelan X   Woodford Kerry J KJ   Wortman Jennifer R JR   Wu Martin M   Yao Alison A   Zdobnov Evgeny M EM   Zhang Hongyu H   Zhao Qi Q   Zhao Shaying S   Zhu Shiaoping C SC   Zhimulev Igor I   Coluzzi Mario M   della Torre Alessandra A   Roth Charles W CW   Louis Christos C   Kalush Francis F   Mural Richard J RJ   Myers Eugene W EW   Adams Mark D MD   Smith Hamilton O HO   Broder Samuel S   Gardner Malcolm J MJ   Fraser Claire M CM   Birney Ewan E   Bork Peer P   Brey Paul T PT   Venter J Craig JC   Weissenbach Jean J   Kafatos Fotis C FC   Collins Frank H FH   Hoffman Stephen L SL  

Science (New York, N.Y.) 20021001 5591


Anopheles gambiae is the principal vector of malaria, a disease that afflicts more than 500 million people and causes more than 1 million deaths each year. Tenfold shotgun sequence coverage was obtained from the PEST strain of A. gambiae and assembled into scaffolds that span 278 million base pairs. A total of 91% of the genome was organized in 303 scaffolds; the largest scaffold was 23.1 million base pairs. There was substantial genetic variation within this strain, and the apparent existence o  ...[more]

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