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基因农场,由专家网络对拟南芥基因和蛋白质家族进行结构与功能注释。

GeneFarm, structural and functional annotation of Arabidopsis gene and protein families by a network of experts.

作者信息

Aubourg Sébastien, Brunaud Véronique, Bruyère Clémence, Cock Mark, Cooke Richard, Cottet Annick, Couloux Arnaud, Déhais Patrice, Deléage Gilbert, Duclert Aymeric, Echeverria Manuel, Eschbach Aimée, Falconet Denis, Filippi Ghislain, Gaspin Christine, Geourjon Christophe, Grienenberger Jean-Michel, Houlné Guy, Jamet Elisabeth, Lechauve Frédéric, Leleu Olivier, Leroy Philippe, Mache Régis, Meyer Christian, Nedjari Hafed, Negrutiu Ioan, Orsini Valérie, Peyretaillade Eric, Pommier Cyril, Raes Jeroen, Risler Jean-Loup, Rivière Stéphane, Rombauts Stéphane, Rouzé Pierre, Schneider Michel, Schwob Philippe, Small Ian, Soumayet-Kampetenga Ghislain, Stankovski Darko, Toffano Claire, Tognolli Michael, Caboche Michel, Lecharny Alain

机构信息

Unité de Recherche en Génomique Végétale (INRA/CNRS/UEVE) 2 Rue Gaston Crémieux, CP 5708, 91057 Evry Cedex, France.

出版信息

Nucleic Acids Res. 2005 Jan 1;33(Database issue):D641-6. doi: 10.1093/nar/gki115.

Abstract

Genomic projects heavily depend on genome annotations and are limited by the current deficiencies in the published predictions of gene structure and function. It follows that, improved annotation will allow better data mining of genomes, and more secure planning and design of experiments. The purpose of the GeneFarm project is to obtain homogeneous, reliable, documented and traceable annotations for Arabidopsis nuclear genes and gene products, and to enter them into an added-value database. This re-annotation project is being performed exhaustively on every member of each gene family. Performing a family-wide annotation makes the task easier and more efficient than a gene-by-gene approach since many features obtained for one gene can be extrapolated to some or all the other genes of a family. A complete annotation procedure based on the most efficient prediction tools available is being used by 16 partner laboratories, each contributing annotated families from its field of expertise. A database, named GeneFarm, and an associated user-friendly interface to query the annotations have been developed. More than 3000 genes distributed over 300 families have been annotated and are available at http://genoplante-info.infobiogen.fr/Genefarm/. Furthermore, collaboration with the Swiss Institute of Bioinformatics is underway to integrate the GeneFarm data into the protein knowledgebase Swiss-Prot.

摘要

基因组计划严重依赖于基因组注释,并且受到已发表的基因结构和功能预测中当前缺陷的限制。因此,改进注释将有助于更好地挖掘基因组数据,并更安全地规划和设计实验。基因农场项目的目的是为拟南芥核基因和基因产物获得统一、可靠、有文献记录且可追溯的注释,并将其录入一个增值数据库。这个重新注释项目正在对每个基因家族的每个成员进行详尽的执行。与逐个基因的方法相比,进行全家族注释使任务更轻松、更高效,因为为一个基因获得的许多特征可以外推到一个家族的一些或所有其他基因。16个合作实验室正在使用基于现有最有效预测工具的完整注释程序,每个实验室都从其专业领域贡献注释的家族。已经开发了一个名为基因农场的数据库以及一个用于查询注释的用户友好界面。分布在300个家族中的3000多个基因已经被注释,可在http://genoplante-info.infobiogen.fr/Genefarm/上获取。此外,正在与瑞士生物信息学研究所合作,将基因农场数据整合到蛋白质知识库Swiss-Prot中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11e6/540069/479ad9fe99af/gki115f1.jpg

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