| Publication Type: | Journal Article |
| Year of Publication: | 2015 |
| Authors: | J. M. Allen, Huang, D. I., Cronk, Q. C., Johnson, K. P. |
| Journal: | BMC Bioinformatics |
| Volume: | 16 |
| Issue: | 1 |
| Date Published: | Jan-12-2015 |
| Keywords: | Massively parallel sequence data, Next-generation sequencing, Phylogenetics, Phylogenomics, Short-read archive, Targeted gene assembly |
| Abstract: | Background: Assembling genes from next-generation sequencing data is not only time consuming but computationally difficult, particularly for taxa without a closely related reference genome. Assembling even a draft genome using de novo approaches can take days, even on a powerful computer, and these assemblies typically require data from a variety of genomic libraries. Here we describe software that will alleviate these issues by rapidly assembling genes from distantly related taxa using a single library of paired-end reads: aTRAM, automated Target Restricted Assembly Method. The aTRAM pipeline uses a reference sequence, BLAST, and an iterative approach to target and locally assemble the genes of interest. |
| URL: | http://www.biomedcentral.com/1471-2105/16/98 |
| DOI: | 10.1186/s12859-015-0515-2 |
| Short Title: | BMC Bioinformatics |
aTRAM - automated target restricted assembly method: a fast method for assembling loci across divergent taxa from next-generation sequencing data
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