Bai-Han Zhu, Ying-Nan Song, Wei Xue, Gui-Cai Xu, Jun Xiao, Ming-Yuan Sun, Xiaowen Sun, Jiongtang Li
2016.6.22BIOINFORMATICS
tlooto Summary
An efficient and fast genome scaffolding method called PEP_scaffolder, using proteins to scaffold genomes to recover protein-coding gene structures, which outperformed other scaffolders, with the shortest running time and the highest accuracy.
Abstract
Abstract Motivation: Recovering the gene structures is one of the important goals of genome assembly. In low-quality assemblies, and even some high-quality assemblies, certain gene regions are still incomplete; thus, novel scaffolding approaches are required to complete gene regions. Results: We developed an efficient and fast genome scaffolding method called PEP_scaffolder, using proteins to scaffold genomes. The pipeline aims to recover protein-coding gene structures. We tested the method on human contigs; using human UniProt proteins as guides, the improvement on N50 size was 17% increase with an accuracy of ∼97%. PEP_scaffolder improved the proportion of fully covered proteins among all proteins, which was close to the proportion in the finished genome. The method provided a high accuracy of 91% using orthologs of distant species. Tested on simulated fly contigs, PEP_scaffolder outperformed other scaffolders, with the shortest running time and the highest accuracy. Availability and Implementation: The software is freely available at http://www.fishbrowser.org/software/PEP_scaffolder/ Contact: lijt@cafs.ac.cn Supplementary information: Supplementary data are available at Bioinformatics online.
Citation format
ZHU, Bai-Han, et al. Pep_scaffolder: Using (homologous) proteins to scaffold genomes. BIOINFORMATICS, 2016, 32: 3193–3195.