FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform

<p>Abstract</p> <p>Background</p> <p>Two of the main objectives of the genomic and post-genomic era are to structurally and functionally annotate genomes which consists of detecting genes' position and structure, and inferring their function (as well as of other fe...

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Main Authors: Pontarotti Pierre, Gilles André, Balandraud Nathalie, Vitiello Vérane, Gouret Philippe, Danchin Etienne GJ
Format: Article
Language:English
Published: BMC 2005-08-01
Series:BMC Bioinformatics
Online Access:http://www.biomedcentral.com/1471-2105/6/198
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spelling doaj-89fa6c0a71404c6ca4d7ed2b76d168b52020-11-24T21:14:23ZengBMCBMC Bioinformatics1471-21052005-08-016119810.1186/1471-2105-6-198FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platformPontarotti PierreGilles AndréBalandraud NathalieVitiello VéraneGouret PhilippeDanchin Etienne GJ<p>Abstract</p> <p>Background</p> <p>Two of the main objectives of the genomic and post-genomic era are to structurally and functionally annotate genomes which consists of detecting genes' position and structure, and inferring their function (as well as of other features of genomes). Structural and functional annotation both require the complex chaining of numerous different software, algorithms and methods under the supervision of a biologist. The automation of these pipelines is necessary to manage huge amounts of data released by sequencing projects. Several pipelines already automate some of these complex chaining but still necessitate an important contribution of biologists for supervising and controlling the results at various steps.</p> <p/> <p>Results</p> <p>Here we propose an innovative automated platform, FIGENIX, which includes an expert system capable to substitute to human expertise at several key steps. FIGENIX currently automates complex pipelines of structural and functional annotation under the supervision of the expert system (which allows for example to make key decisions, check intermediate results or refine the dataset). The quality of the results produced by FIGENIX is comparable to those obtained by expert biologists with a drastic gain in terms of time costs and avoidance of errors due to the human manipulation of data.</p> <p>Conclusion</p> <p>The core engine and expert system of the FIGENIX platform currently handle complex annotation processes of broad interest for the genomic community. They could be easily adapted to new, or more specialized pipelines, such as for example the annotation of miRNAs, the classification of complex multigenic families, annotation of regulatory elements and other genomic features of interest.</p> http://www.biomedcentral.com/1471-2105/6/198
collection DOAJ
language English
format Article
sources DOAJ
author Pontarotti Pierre
Gilles André
Balandraud Nathalie
Vitiello Vérane
Gouret Philippe
Danchin Etienne GJ
spellingShingle Pontarotti Pierre
Gilles André
Balandraud Nathalie
Vitiello Vérane
Gouret Philippe
Danchin Etienne GJ
FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
BMC Bioinformatics
author_facet Pontarotti Pierre
Gilles André
Balandraud Nathalie
Vitiello Vérane
Gouret Philippe
Danchin Etienne GJ
author_sort Pontarotti Pierre
title FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
title_short FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
title_full FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
title_fullStr FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
title_full_unstemmed FIGENIX: Intelligent automation of genomic annotation: expertise integration in a new software platform
title_sort figenix: intelligent automation of genomic annotation: expertise integration in a new software platform
publisher BMC
series BMC Bioinformatics
issn 1471-2105
publishDate 2005-08-01
description <p>Abstract</p> <p>Background</p> <p>Two of the main objectives of the genomic and post-genomic era are to structurally and functionally annotate genomes which consists of detecting genes' position and structure, and inferring their function (as well as of other features of genomes). Structural and functional annotation both require the complex chaining of numerous different software, algorithms and methods under the supervision of a biologist. The automation of these pipelines is necessary to manage huge amounts of data released by sequencing projects. Several pipelines already automate some of these complex chaining but still necessitate an important contribution of biologists for supervising and controlling the results at various steps.</p> <p/> <p>Results</p> <p>Here we propose an innovative automated platform, FIGENIX, which includes an expert system capable to substitute to human expertise at several key steps. FIGENIX currently automates complex pipelines of structural and functional annotation under the supervision of the expert system (which allows for example to make key decisions, check intermediate results or refine the dataset). The quality of the results produced by FIGENIX is comparable to those obtained by expert biologists with a drastic gain in terms of time costs and avoidance of errors due to the human manipulation of data.</p> <p>Conclusion</p> <p>The core engine and expert system of the FIGENIX platform currently handle complex annotation processes of broad interest for the genomic community. They could be easily adapted to new, or more specialized pipelines, such as for example the annotation of miRNAs, the classification of complex multigenic families, annotation of regulatory elements and other genomic features of interest.</p>
url http://www.biomedcentral.com/1471-2105/6/198
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