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Recovery of genomes from metagenomes via a dereplication, aggregation and scoring strategy
by
Probst, Alexander J.
, Sieber, Christian M. K.
, Tringe, Susannah G.
, Thomas, Brian C.
, Banfield, Jillian F.
, Sharrar, Allison
, Hess, Matthias
in
45/23
/ 631/114/2785/2302
/ 631/114/794
/ 631/1647/48
/ 631/326/171
/ 631/326/2565/2142
/ Algorithms
/ Animals
/ BASIC BIOLOGICAL SCIENCES
/ Biomedical and Life Sciences
/ Computational Biology - methods
/ Data Curation
/ Ecosystems
/ Gastrointestinal Microbiome
/ Genome, Bacterial
/ Genomes
/ Humans
/ Infectious Diseases
/ Life Sciences
/ Medical Microbiology
/ Metabolic pathways
/ Metagenomics - methods
/ Microbiology
/ Microbiota
/ Parasitology
/ Soil Microbiology
/ User-Computer Interface
/ Virology
/ Water Microbiology
2018
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Recovery of genomes from metagenomes via a dereplication, aggregation and scoring strategy
by
Probst, Alexander J.
, Sieber, Christian M. K.
, Tringe, Susannah G.
, Thomas, Brian C.
, Banfield, Jillian F.
, Sharrar, Allison
, Hess, Matthias
in
45/23
/ 631/114/2785/2302
/ 631/114/794
/ 631/1647/48
/ 631/326/171
/ 631/326/2565/2142
/ Algorithms
/ Animals
/ BASIC BIOLOGICAL SCIENCES
/ Biomedical and Life Sciences
/ Computational Biology - methods
/ Data Curation
/ Ecosystems
/ Gastrointestinal Microbiome
/ Genome, Bacterial
/ Genomes
/ Humans
/ Infectious Diseases
/ Life Sciences
/ Medical Microbiology
/ Metabolic pathways
/ Metagenomics - methods
/ Microbiology
/ Microbiota
/ Parasitology
/ Soil Microbiology
/ User-Computer Interface
/ Virology
/ Water Microbiology
2018
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Recovery of genomes from metagenomes via a dereplication, aggregation and scoring strategy
by
Probst, Alexander J.
, Sieber, Christian M. K.
, Tringe, Susannah G.
, Thomas, Brian C.
, Banfield, Jillian F.
, Sharrar, Allison
, Hess, Matthias
in
45/23
/ 631/114/2785/2302
/ 631/114/794
/ 631/1647/48
/ 631/326/171
/ 631/326/2565/2142
/ Algorithms
/ Animals
/ BASIC BIOLOGICAL SCIENCES
/ Biomedical and Life Sciences
/ Computational Biology - methods
/ Data Curation
/ Ecosystems
/ Gastrointestinal Microbiome
/ Genome, Bacterial
/ Genomes
/ Humans
/ Infectious Diseases
/ Life Sciences
/ Medical Microbiology
/ Metabolic pathways
/ Metagenomics - methods
/ Microbiology
/ Microbiota
/ Parasitology
/ Soil Microbiology
/ User-Computer Interface
/ Virology
/ Water Microbiology
2018
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Recovery of genomes from metagenomes via a dereplication, aggregation and scoring strategy
Journal Article
Recovery of genomes from metagenomes via a dereplication, aggregation and scoring strategy
2018
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Overview
Microbial communities are critical to ecosystem function. A key objective of metagenomic studies is to analyse organism-specific metabolic pathways and reconstruct community interaction networks. This requires accurate assignment of assembled genome fragments to genomes. Existing binning methods often fail to reconstruct a reasonable number of genomes and report many bins of low quality and completeness. Furthermore, the performance of existing algorithms varies between samples and biotopes. Here, we present a dereplication, aggregation and scoring strategy, DAS Tool, that combines the strengths of a flexible set of established binning algorithms. DAS Tool applied to a constructed community generated more accurate bins than any automated method. Indeed, when applied to environmental and host-associated samples of different complexity, DAS Tool recovered substantially more near-complete genomes, including previously unreported lineages, than any single binning method alone. The ability to reconstruct many near-complete genomes from metagenomics data will greatly advance genome-centric analyses of ecosystems.
Here the authors present a tool that enables a flexible set of existing binning algorithms to be combined, resulting in improved binning accuracy and the recovery of more near-complete genomes from metagenomes compared to standalone methods.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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