Meraculous2: fast accurate short-read assembly of large polymorphic genomes
August 02, 2016 Β· Declared Dead Β· π arXiv.org
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Authors
Jarrod A. Chapman, Isaac Y. Ho, Eugene Goltsman, Daniel S. Rokhsar
arXiv ID
1608.01031
Category
cs.DS: Data Structures & Algorithms
Cross-listed
q-bio.GN
Citations
17
Venue
arXiv.org
Last Checked
3 months ago
Abstract
We present Meraculous2, an update to the Meraculous short-read assembler that includes (1) handling of allelic variation using "bubble" structures within the de Bruijn graph, (2) improved gap closing, and (3) an improved scaffolding algorithm that produces more complete assemblies without compromising scaffolding accuracy. The speed and bandwidth efficiency of the new parallel implementation have also been substantially improved, allowing the assembly of a human genome to be accomplished in 24 hours on the JGI/NERSC Genepool system. To highlight the features of Meraculous2 we present here the assembly of the diploid human genome NA12878, and compare it with previously published assemblies of the same data using other algorithms. The Meraculous2 assemblies are shown to have better completeness, contiguity, and accuracy than other published assemblies for these data. Practical considerations including pre-assembly analyses of polymorphism and repetitiveness are described.
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