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MetaLook: a 3D visualisation software for marine ecological genomics.


ABSTRACT: BACKGROUND: Marine ecological genomics can be defined as the application of genomic sciences to understand the structure and function of marine ecosystems. In this field of research, the analysis of genomes and metagenomes of environmental relevance must take into account the corresponding habitat (contextual) data, e.g. water depth, physical and chemical parameters. The creation of specialised software tools and databases is requisite to allow this new kind of integrated analysis. RESULTS: We implemented the MetaLook software for visualisation and analysis of marine ecological genomic and metagenomic data with respect to habitat parameters. MetaLook offers a three-dimensional user interface to interactively visualise DNA sequences on a world map, based on a centralised georeferenced database. The user can define environmental containers to organise the sequences according to different habitat criteria. To find similar sequences, the containers can be queried with either genes from the georeferenced database or user-imported sequences, using the BLAST algorithm. This allows an interactive assessment of the distribution of gene functions in the environment. CONCLUSION: MetaLook allows scientists to investigate sequence data in their environmental context and to explore correlations between genes and habitat parameters. This software is a step towards the creation of specialised tools to study constrained distributions and habitat specificity of genes correlated with specific processes. MetaLook is available at: http://www.megx.net/metalook.

SUBMITTER: Lombardot T 

PROVIDER: S-EPMC2134934 | biostudies-literature | 2007

REPOSITORIES: biostudies-literature

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MetaLook: a 3D visualisation software for marine ecological genomics.

Lombardot Thierry T   Kottmann Renzo R   Giuliani Gregory G   de Bono Andrea A   Addor Nans N   Glöckner Frank Oliver FO  

BMC bioinformatics 20071022


<h4>Background</h4>Marine ecological genomics can be defined as the application of genomic sciences to understand the structure and function of marine ecosystems. In this field of research, the analysis of genomes and metagenomes of environmental relevance must take into account the corresponding habitat (contextual) data, e.g. water depth, physical and chemical parameters. The creation of specialised software tools and databases is requisite to allow this new kind of integrated analysis.<h4>Res  ...[more]

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