Installation and Getting Started v1
Afiahayati not provided, not provided Sato K, not provided Namiki T, not provided Hachiya T, not provided Tanaka H, not provided Sakakibara Y.
Abstract
Afiahayati not provided, not provided Sato K, not provided Namiki T, not provided Hachiya T, not provided Tanaka H, not provided Sakakibara Y.
Abstract
Motivation: An important step of "metagenomics" analysis is the assembly of multiple genomes from mixed sequence reads of multiple species in a microbial community. Most conventional pipelines employ a single-genome assembler with carefully optimized parameters and post-process the resulting scaffolds to correct assembly errors. Limitations of the use of a single-genome assembler forde novometagenome assembly are that highly conserved sequences shared between different species often causes chimera contigs, and sequences of highly abundant species are likely mis-identified as repeats in a single genome. Methods:We modified and extended a single-genome and de Bruijn-graph based assembler,Velvet, forde novometagenome assembly. Our fundamental ideas are first decomposing de Bruijn graph constructed from mixed short reads into individual sub-graphs and second building scaffolds based on every decomposed de Bruijn sub-graph as isolate species genome.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Motivation: An important step of "metagenomics" analysis is the assembly of multiple genomes from mixed sequence reads of multiple species in a microbial community. Most conventional pipelines employ a single-genome assembler with carefully optimized parameters and post-process the resulting scaffolds to correct assembly errors. Limitations of the use of a single-genome assembler forde novometagenome assembly are that highly conserved sequences shared between different species often causes chimera contigs, and sequences of highly abundant species are likely mis-identified as repeats in a single genome. Methods:We modified and extended a single-genome and de Bruijn-graph based assembler,Velvet, forde novometagenome assembly. Our fundamental ideas are first decomposing de Bruijn graph constructed from mixed short reads into individual sub-graphs and second building scaffolds based on every decomposed de Bruijn sub-graph as isolate species genome.
Key concepts: De Bruijn graph, De Bruijn sequence, Contig, Genome, Sequence assembly, Metagenomics, Computational biology, Computer science