# HG changeset patch
# User iuc
# Date 1434045036 14400
# Node ID a12ce5668966dbadb8c09b417076090d4c03be5c
# Parent b98d6fffd00b2cb29952912e131f997dd5cea0ae
planemo upload for repository https://github.com/galaxyproject/tools-iuc/tree/master/tools/art commit 44c7d88ebdbf798890394a7696a4ce0c504faaf7
diff -r b98d6fffd00b -r a12ce5668966 art_454.xml
--- a/art_454.xml Thu Jun 11 11:51:06 2015 -0400
+++ b/art_454.xml Thu Jun 11 13:50:36 2015 -0400
@@ -3,6 +3,7 @@
macros.xml
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macros.xml
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macros.xml
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2014.11.03.0
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+ art
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diff -r b98d6fffd00b -r a12ce5668966 tool_dependencies.xml
--- a/tool_dependencies.xml Thu Jun 11 11:51:06 2015 -0400
+++ b/tool_dependencies.xml Thu Jun 11 13:50:36 2015 -0400
@@ -1,38 +1,6 @@
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- http://www.niehs.nih.gov/research/resources/assets/docs/artsrcvanillaicecream031114linuxtgz.tgz
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- $INSTALL_DIR/bin/
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- ART is a set of simulation tools to generate synthetic next-generation
-sequencing reads. ART simulates sequencing reads by mimicking real
-sequencing process with empirical error models or quality profiles summarized
-from large recalibrated sequencing data. ART can also simulate reads using user
-own read error model or quality profiles. ART supports simulation of
-single-end, paired-end/mate-pair reads of three major commercial
-next-generation sequencing platforms: Illumina's Solexa, Roche's 454 and
-Applied Biosystems' SOLiD. ART can be used to test or benchmark a variety
-of method or tools for next-generation sequencing data analysis, including
-read alignment, de novo assembly, SNP and structure variation discovery.
-ART was used as a primary tool for the simulation study of the 1000 Genomes
-Project . ART is implemented in C++ with optimized algorithms and is highly
-efficient in read simulation. ART outputs reads in the FASTQ format, and
-alignments in the ALN format. ART can also generate alignments in the SAM
-alignment or UCSC BED file format.
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