Metagenomic ventures into outer sequence space

Publication date

2014-01-01

Authors

Dutilh, Bas E.ISNI 0000000389464735

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

Abstract

Sequencing DNA or RNA directly from the environment often results in many sequencing reads that have no homologs in the database. These are referred to as "unknowns," and reflect the vast unexplored microbial sequence space of our biosphere, also known as "biological dark matter." However, unknowns also exist because metagenomic datasets are not optimally mined. There is a pressure on researchers to publish and move on, and the unknown sequences are often left for what they are, and conclusions drawn based on reads with annotated homologs. This can cause abundant and widespread genomes to be overlooked, such as the recently discovered human gut bacteriophage crAssphage. The unknowns may be enriched for bacteriophage sequences, the most abundant and genetically diverse component of the biosphere and of sequence space. However, it remains an open question, what is the actual size of biological sequence space? The de novo assembly of shotgun metagenomes is the most powerful tool to address this question.

Keywords

biological dark matter, crAssphage, human gut, human virome, metagenomics, metagenome assembly, unknowns

Citation

Dutilh, B E 2014, 'Metagenomic ventures into outer sequence space', Bacteriophage, vol. 4, no. 4, e979664. https://doi.org/10.4161/21597081.2014.979664