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Registros recuperados: 12 | |
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James R. White; Malcolm Matalka; W. Florian Fricke; Samuel V. Angiuoli. |
BLAST is arguably the single most important piece of software ever written for the biological sciences. It is the core of most bioinformatics workflows, being a critical component of genome homology searches and annotation. It has influenced the landscape of biology by aiding in everything from functional characterization of genes to pathogen detection to the development of novel vaccines. While BLAST is very popular, it is also often one of the most computationally intensive parts of bioinformatics analysis. In our workflows, BLAST typically takes the majority of cpu time, and we need to parallelize to finish in a reasonable time frame. Waiting for BLAST to finish without having any clue of how long it’s going to take is kind of depressing, and... |
Tipo: Manuscript |
Palavras-chave: Genetics & Genomics; Bioinformatics. |
Ano: 2011 |
URL: http://precedings.nature.com/documents/5593/version/1 |
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James R. White; Malcolm Matalka; W. Florian Fricke; Samuel V. Angiuoli. |
BLAST is arguably the single most important piece of software ever written for the biological sciences. It is the core of most bioinformatics workflows, being a critical component of genome homology searches and annotation. It has influenced the landscape of biology by aiding in everything from functional characterization of genes to pathogen detection to the development of novel vaccines. While BLAST is very popular, it is also often one of the most computationally intensive parts of bioinformatics analysis. In our workflows, BLAST typically takes the majority of cpu time, and we need to parallelize to finish in a reasonable time frame. Waiting for BLAST to finish without having any clue of how long it’s going to take is kind of depressing, and... |
Tipo: Manuscript |
Palavras-chave: Genetics & Genomics; Bioinformatics. |
Ano: 2011 |
URL: http://precedings.nature.com/documents/5593/version/2 |
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Registros recuperados: 12 | |
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