Literature DB >> 31835036

Charting the Complexity of the Marine Microbiome through Single-Cell Genomics.

Maria G Pachiadaki1, Julia M Brown2, Joseph Brown2, Oliver Bezuidt2, Paul M Berube3, Steven J Biller3, Nicole J Poulton2, Michael D Burkart4, James J La Clair4, Sallie W Chisholm5, Ramunas Stepanauskas6.   

Abstract

Marine bacteria and archaea play key roles in global biogeochemistry. To improve our understanding of this complex microbiome, we employed single-cell genomics and a randomized, hypothesis-agnostic cell selection strategy to recover 12,715 partial genomes from the tropical and subtropical euphotic ocean. A substantial fraction of known prokaryoplankton coding potential was recovered from a single, 0.4 mL ocean sample, which indicates that genomic information disperses effectively across the globe. Yet, we found each genome to be unique, implying limited clonality within prokaryoplankton populations. Light harvesting and secondary metabolite biosynthetic pathways were numerous across lineages, highlighting the value of single-cell genomics to advance the identification of ecological roles and biotechnology potential of uncultured microbial groups. This genome collection enabled functional annotation and genus-level taxonomic assignments for >80% of individual metagenome reads from the tropical and subtropical surface ocean, thus offering a model to improve reference genome databases for complex microbiomes.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Genomics; biodiversity; biogeography; bioprospecting; microbial ecology; oceanography; omics; plankton; reference database; single-cell genomics

Mesh:

Year:  2019        PMID: 31835036      PMCID: PMC6919566          DOI: 10.1016/j.cell.2019.11.017

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  99 in total

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Review 3.  Single cell genomics: an individual look at microbes.

Authors:  Ramunas Stepanauskas
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8.  The Sorcerer II Global Ocean Sampling expedition: northwest Atlantic through eastern tropical Pacific.

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2.  A wealth of new biosynthetic pathways from the global ocean microbiome.

Authors: 
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Review 5.  Priority effects in microbiome assembly.

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7.  mOTUpan: a robust Bayesian approach to leverage metagenome-assembled genomes for core-genome estimation.

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9.  Ecophysiology of the Cosmopolitan OM252 Bacterioplankton (Gammaproteobacteria).

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