Abstract
Recent metagenomics studies of environmental samples suggested that microbial communities are much more diverse than previously reported, and deep sequencing will significantly increase the estimate of total species diversity. Massively parallel pyrosequencing technology enables ultra-deep sequencing of complex microbial populations rapidly and inexpensively. However, computational methods for analyzing large collections of 16S ribosomal sequences are limited. We proposed a new algorithm, referred to as ESPRIT, which addresses several computational issues with prior methods. We developed two versions of ESPRIT, one for personal computers (PCs) and one for computer clusters (CCs). The PC version is used for small- and medium-scale data sets and can process several tens of thousands of sequences within a few minutes, while the CC version is for large-scale problems and is able to analyze several hundreds of thousands of reads within one day. Large-scale experiments are presented that clearly demonstrate the effectiveness of the newly proposed algorithm. The source code and user guide are freely available at http://www.biotech.ufl.edu/people/sun/esprit.html.
MeSH Terms
Air Microbiology
Algorithms
Biodiversity
Environmental Microbiology
Genes, rRNA
RNA, Ribosomal, 16S/genetics
Seawater/microbiology
Sequence Alignment
Sequence Analysis, DNA
Chemicals
RNA, Ribosomal, 16S
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Sun Yijun
Interdisciplinary Center for Biotechnology Research, University of Florida, Gainesville, FL 32610-3622, USA. sunyijun@biotech.ufl.edu
Cai Yunpeng
Liu Li
Yu Fahong
Farrell Michael L
McKendree William
Farmerie William
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