Ecosystem-wide metagenomic binning enables prediction of ecological niches from genomes.

Commun Biol

Department of Gene Technology, Science for Life Laboratory, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, Stockholm, Sweden.

Published: March 2020

AI Article Synopsis

  • The study explores how an organism's genome can predict its ecological niche, focusing on water samples from the Baltic Sea.
  • Researchers created 1961 metagenome-assembled genomes from these samples, representing a third of the prokaryotic metagenome sequences.
  • Using machine learning, they found that the distribution of these genomes in various environmental factors could be predicted more accurately from functional genes than from phylogenetic data.

Article Abstract

The genome encodes the metabolic and functional capabilities of an organism and should be a major determinant of its ecological niche. Yet, it is unknown if the niche can be predicted directly from the genome. Here, we conduct metagenomic binning on 123 water samples spanning major environmental gradients of the Baltic Sea. The resulting 1961 metagenome-assembled genomes represent 352 species-level clusters that correspond to 1/3 of the metagenome sequences of the prokaryotic size-fraction. By using machine-learning, the placement of a genome cluster along various niche gradients (salinity level, depth, size-fraction) could be predicted based solely on its functional genes. The same approach predicted the genomes' placement in a virtual niche-space that captures the highest variation in distribution patterns. The predictions generally outperformed those inferred from phylogenetic information. Our study demonstrates a strong link between genome and ecological niche and provides a conceptual framework for predictive ecology based on genomic data.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7070063PMC
http://dx.doi.org/10.1038/s42003-020-0856-xDOI Listing

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