NextDenovo: an efficient error correction and accurate assembly tool for noisy long reads
Bioscience (China) · Grandomics (China) · +9 more institutions
Abstract
Long-read sequencing data, particularly those derived from the Oxford Nanopore sequencing platform, tend to exhibit high error rates. Here, we present NextDenovo, an efficient error correction and assembly tool for noisy long reads, which achieves a high level of accuracy in genome assembly. We apply NextDenovo to assemble 35 diverse human genomes from around the world using Nanopore long-read data. These genomes allow us to identify the landscape of segmental duplication and gene copy number variation in modern human populations. The use of NextDenovo should pave the way for population-scale long-read assembly using Nanopore long-read data.
Citation impact
- FWCI
- 109.83
- Percentile
- 100%
- References
- 51
Authors
15- JHJiang Hu
Bioscience (China), Grandomics (China), Xi'an Jiaotong University
- ZWZhuo Wang
Bioscience (China), Grandomics (China)
- ZSZongyi Sun
Bioscience (China), Grandomics (China)
- BHBenxia Hu
Kunming Institute of Zoology, Chinese Academy of Sciences
- AOAdeola Oluwakemi Ayoola
Kunming Institute of Zoology, Chinese Academy of Sciences
Topics & keywords
- Biology
- Computational biology
- Human genetics
- Sequence assembly
- Genome Biology
- Evolutionary biology
- Genetics
- Genomics