CeMbio - The Caenorhabditis elegans Microbiome Resource

Author:

Dirksen Philipp1,Assié Adrien2,Zimmermann Johannes3,Zhang Fan2,Tietje Adina-Malin1,Marsh Sarah Arnaud4,Félix Marie-Anne4,Shapira Michael5,Kaleta Christoph3,Schulenburg Hinrich1,Samuel Buck S2

Affiliation:

1. Department of Evolutionary Ecology and Genetics, Christian-Albrechts University, Kiel, Germany

2. Alkek Center for Metagenomics and Microbiome Research, Baylor College of Medicine, Houston TX

3. Medical Systems Biology, University Medical Center Schleswig-Holstein, Kiel, Germany

4. Institute of Biology of the Ecole Normale Supérieure, Paris, France

5. Department of Integrative Biology, University of California, Berkeley CA

Abstract

Abstract The study of microbiomes by sequencing has revealed a plethora of correlations between microbial community composition and various life-history characteristics of the corresponding host species. However, inferring causation from correlation is often hampered by the sheer compositional complexity of microbiomes, even in simple organisms. Synthetic communities offer an effective approach to infer cause-effect relationships in host-microbiome systems. Yet the available communities suffer from several drawbacks, such as artificial (thus non-natural) choice of microbes, microbe-host mismatch (e.g., human microbes in gnotobiotic mice), or hosts lacking genetic tractability. Here we introduce CeMbio, a simplified natural Caenorhabditis elegans microbiota derived from our previous meta-analysis of the natural microbiome of this nematode. The CeMbio resource is amenable to all strengths of the C. elegans model system, strains included are readily culturable, they all colonize the worm gut individually, and comprise a robust community that distinctly affects nematode life-history. Several tools have additionally been developed for the CeMbio strains, including diagnostic PCR primers, completely sequenced genomes, and metabolic network models. With CeMbio, we provide a versatile resource and toolbox for the in-depth dissection of naturally relevant host-microbiome interactions in C. elegans.

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology

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