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Gene Capture Coupled to High-Throughput Sequencing as a Strategy for Targeted Metagenome Exploration
- Source :
- DNA Research, DNA Research, Oxford University Press (OUP), 2013, 20 (2), pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research, 2013, 20 (2), pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research, Oxford University Press (OUP), 2013, pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research 2 (20), 185-196. (2013), DNA Research, Oxford University Press (OUP), 2013, pp. 1-12. 〈10.1093/dnares/dst001〉, DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes
- Publication Year :
- 2013
- Publisher :
- HAL CCSD, 2013.
-
Abstract
- International audience; Next-generation sequencing (NGS) allows faster acquisition of metagenomic data, but complete exploration of complex ecosystems is hindered by the extraordinary diversity of microorganisms. To reduce the environmental complexity, we created an innovative solution hybrid selection (SHS) method that is combined with NGS to characterize large DNA fragments harbouring biomarkers of interest. The quality of enrichment was evaluated after fragments containing the methyl coenzyme M reductase subunit A gene (mcrA), the biomarker of methanogenesis, were captured from a Methanosarcina strain and a metagenomic sample from a meromictic lake. The methanogen diversity was compared with direct metagenome and mcrA-based amplicon pyrosequencing strategies. The SHS approach resulted in the capture of DNA fragments up to 2.5 kb with an enrichment efficiency between 41 and 100%, depending on the sample complexity. Compared with direct metagenome and amplicons sequencing, SHS detected broader mcrA diversity, and it allowed efficient sampling of the rare biosphere and unknown sequences. In contrast to amplicon-based strategies, SHS is less biased and GC independent, and it recovered complete biomarker sequences in addition to conserved regions. Because this method can also isolate the regions flanking the target sequences, it could facilitate operon reconstructions.
- Subjects :
- DNA, Bacterial
Rare biosphere
Biology
DNA sequencing
a-subunit of the methyl-coenzyme M reductase
03 medical and health sciences
chemistry.chemical_compound
diversité microbienne
[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry, Molecular Biology/Genomics [q-bio.GN]
Operon
Genetics
Molecular Biology
Gene
030304 developmental biology
métagénomique
0303 health sciences
metagenomics
a -subunit of the methyl-coenzyme M reductase
sequence capture
454 pyrosequencing
microbial diversity
Base Sequence
030306 microbiology
α-subunit of the methyl-coenzyme M reductase
High-Throughput Nucleotide Sequencing
General Medicine
Methanosarcina
Full Papers
Amplicon
biology.organism_classification
pyroséquençage
chemistry
[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry, Molecular Biology/Genomics [q-bio.GN]
Metagenomics
Metagenome
Pyrosequencing
Oxidoreductases
Genome, Bacterial
DNA
Subjects
Details
- Language :
- English
- ISSN :
- 13402838
- Database :
- OpenAIRE
- Journal :
- DNA Research, DNA Research, Oxford University Press (OUP), 2013, 20 (2), pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research, 2013, 20 (2), pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research, Oxford University Press (OUP), 2013, pp. 1-12. ⟨10.1093/dnares/dst001⟩, DNA Research 2 (20), 185-196. (2013), DNA Research, Oxford University Press (OUP), 2013, pp. 1-12. 〈10.1093/dnares/dst001〉, DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes
- Accession number :
- edsair.doi.dedup.....7c32de2329dc2b20656b74fd8d3ab626