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Award Abstract #0421679
ChromDB: Integrating Information About Plant Chromatin Proteins and Complexes


NSF Org: IOS
Division of Integrative Organismal Systems
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Initial Amendment Date: July 16, 2004
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Latest Amendment Date: November 17, 2009
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Award Number: 0421679
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Award Instrument: Continuing grant
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Program Manager: Diane Jofuku Okamuro
IOS Division of Integrative Organismal Systems
BIO Directorate for Biological Sciences
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Start Date: September 1, 2004
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Expires: August 31, 2010 (Estimated)
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Awarded Amount to Date: $1596536
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Investigator(s): Richard Jorgensen raj@ag.arizona.edu (Principal Investigator)
Carolyn Napoli (Former Principal Investigator)
Carolyn Napoli (Co-Principal Investigator)
Nadja Wehmeyer (Co-Principal Investigator)
Richard Jorgensen (Former Co-Principal Investigator)
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Sponsor: University of Arizona
888 N Euclid Ave
TUCSON, AZ 85721 520/626-6000
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NSF Program(s): PLANT GENOME RESEARCH RESOURCE,
PLANT GENOME RESEARCH PROJECT
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Field Application(s):
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Program Reference Code(s): BIOT, 9109
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Program Element Code(s): 7577, 1329

ABSTRACT

Eukaryotic cells package nuclear DNA in a variety of highly ordered structures, collectively termed "chromatin". The primary function of chromatin is to maintain a restrictive ground state wherein the DNA is inaccessible to the transcriptional machinery but is accessible to specific transcriptional activators and repressors that recruit multi-protein complexes capable of remodeling chromatin locally to allow transcription to occur. ChromDB (Plant Chromatin Database) was established originally as a project-specific database to display the results of a previous Plant Genome Research Program grant that examined the functional genomics of chromatin proteins in Arabidopsis and maize. The Arabidopsis genomic sequence and, once available, the maize EST collection were queried using protein domains from known yeast, fly, human, and nematode chromatin genes to assemble a collection of putative plant chromatin proteins. Chromatin proteins from rice and the single-celled alga Chlamydomonas reinhardtii were added to the database to provide more phylogenetic perspective to the database. This award supports the broad expansion of ChromDB from a project-oriented database to a community database supporting the entire plant biology community.

The complement of chromatin proteins will be increased to include all plant species for which either genomic or cDNA sequences are available in order to provide a comprehensive, comparative summary of predicted protein domains, transcript splicing products, molecular phylogenetic relationships and molecular signatures of selection. ChromDB will integrate and display all available community data regarding gene function such as mutant phenotypes, biochemical activities and properties, transcript and protein expression patterns, physical and genetic interactions between genes and proteins, and localization of chromatin proteins within the nucleus. ChromDB will provide a public annotation forum for researchers to submit and present this information with the submissions reviewed by an editorial advisory board.

An educational outreach program will provide experience for high school teachers in the area of bioinformatics and functional genomics. There are three objectives associated with this outreach: (1) to produce, in partnership with teachers, a set of web-based, integrated teaching modules to introduce students to the biological importance of chromatin by way of discussions centered on DNA, genes, and chromosomes, as well introduce students to the scientific method and experimental analysis; (2) to provide teachers with working experience in select aspects of bioinformatics; and (3) to develop a protocol for experiments to be conducted in classroom locations under circumstances of limited supplies and equipment.

All project-generated results and materials will be available at the database site, http://www.chromdb.org/.


PUBLICATIONS PRODUCED AS A RESULT OF THIS RESEARCH

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Bowler C; Allen AE; Badger JH; Grimwood J; Jabbari K; Kuo A; Maheswari U; Martens C; Maumus F; Otillar RP; Rayko E; Salamov A; Vandepoele K; Beszteri B; Gruber A; Heijde M; Katinka M; Mock T; Valentin K; Verret F; Berges JA; Brownlee C; Cadoret JP; Chiovi. "The Phaeodactylum genome reveals the evolutionary history of diatom genomes.," Nature, v.456, 2008, p. 239.

Brian Palenika et al. (genome manuscript; too many authors to list). "The tiny eukaryote Ostreococcus provides genomic insights into the paradox of plankton speciation," PNAS, v.104, 2007, p. 7705.

Coleman JJ; Rounsley SD; Rodriguez-Carres M; Kuo A; Wasmann CC; Grimwood J; Schmutz J; Taga M; White GJ; Zhou S; Schwartz DC; Freitag M; Ma LJ; Danchin EG; Henrissat B; Coutinho PM; Nelson DR; Straney D; Napoli CA; Barker BM; Gribskov M; Rep M; Kroken S; . "The Genome of Nectria haematococca: Contribution of Supernumerary Chromosomes to Gene Expansion," PLoS Genetics, v.5, 2009.

Gendler K, Paulsen T, Napoli C.. "ChromDB: the chromatin database.," Nucelic Acids Research, v.147, 2008, p. 298.

Hayden CA; Jorgensen RA.. "Identification of novel conserved peptide uORF homology groups in Arabidopsis and rice reveals ancient eukaryotic origin of select groups and preferential association with transcription factor-encoding genes.," BMC Biology, v.5, 2007, p. 32.

Merchant SS; Prochnik SE; Vallon O; Harris EH; Karpowicz SJ; Witman GB; Terry A; Salamov A; Fritz-Laylin LK; Maréchal-Drouard L; Marshall WF; Qu LH; Nelson DR; Sanderfoot AA; Spalding MH; Kapitonov VV; Ren Q; Ferris P; Lindquist E; Shapiro H; Lucas SM; G. "The Chlamydomonas genome reveals the evolution of key animal and plant functions.," Science, v.318, 2007, p. 245.

Ming-Kuem Lin, Helene Belanger, Young-Jin Lee, Erika Varkonyi-Gasic, Ken-Ichiro Taoka, Eriko Miura, Beatriz Xoconostle-Cázares, Karla Gendler, Richard A. Jorgensen, Brett Phinney, Tony J. Lough, and William J. Lucas. "FLOWERING LOCUS T Protein May Act as the Long-Distance Florigenic Signal in the Cucurbits," The Plant Cell, v.on-line, 2007, p. xxxx.

Palenik B; Grimwood J; Aerts A; Rouzé P; Salamov A; Putnam N; Dupont C; Jorgensen R; Derelle E; Rombauts S; Zhou K; Otillar R; Merchant SS; Podell S; Gaasterland T; Napoli C; Gendler K; Manuell A; Tai V; Vallon O; Piganeau G; Jancek S; Heijde M; Jabbari. "The tiny eukaryote Ostreococcus provides genomic insights into the paradox of plankton speciation," PNAS, v.104, 2007, p. 7705.

Tuskan GA et al (genome manuscript with multiple authors; too many to list). "The genome of black cottonwood, Populus trichocarpa (Torr. & Gray).," Science, v.313, 2006, p. 1596.

Tuskan GA; Difazio S; Jansson S; Bohlmann J; Grigoriev I; Hellsten U; Putnam N; Ralph S; Rombauts S; Salamov A; Schein J; Sterck L; Aerts A; Bhalerao RR; Bhalerao RP; Blaudez D; Boerjan W; Brun A; Brunner A; Busov V; Campbell M; Carlson J; Chalot M; Chapm. "The genome of black cottonwood, Populus trichocarpa (Torr. & Gray).," Science, v.313, 2006, p. 1596.


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Last Updated:April 2, 2007