Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published September 2023 | Published
Journal Article Open

Physiological potential and evolutionary trajectories of syntrophic sulfate-reducing bacterial partners of anaerobic methanotrophic archaea

Abstract

Sulfate-coupled anaerobic oxidation of methane (AOM) is performed by multicellular consortia of anaerobic methanotrophic archaea (ANME) in obligate syntrophic partnership with sulfate-reducing bacteria (SRB). Diverse ANME and SRB clades co-associate but the physiological basis for their adaptation and diversification is not well understood. In this work, we used comparative metagenomics and phylogenetics to investigate the metabolic adaptation among the 4 main syntrophic SRB clades (HotSeep-1, Seep-SRB2, Seep-SRB1a, and Seep-SRB1g) and identified features associated with their syntrophic lifestyle that distinguish them from their non-syntrophic evolutionary neighbors in the phylum Desulfobacterota. We show that the protein complexes involved in direct interspecies electron transfer (DIET) from ANME to the SRB outer membrane are conserved between the syntrophic lineages. In contrast, the proteins involved in electron transfer within the SRB inner membrane differ between clades, indicative of convergent evolution in the adaptation to a syntrophic lifestyle. Our analysis suggests that in most cases, this adaptation likely occurred after the acquisition of the DIET complexes in an ancestral clade and involve horizontal gene transfers within pathways for electron transfer (CbcBA) and biofilm formation (Pel). We also provide evidence for unique adaptations within syntrophic SRB clades, which vary depending on the archaeal partner. Among the most widespread syntrophic SRB, Seep-SRB1a, subclades that specifically partner ANME-2a are missing the cobalamin synthesis pathway, suggestive of nutritional dependency on its partner, while closely related Seep-SRB1a partners of ANME-2c lack nutritional auxotrophies. Our work provides insight into the features associated with DIET-based syntrophy and the adaptation of SRB towards it.

Copyright and License

This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication.

Abstract

This research was supported by the Gordon and Betty Moore Foundation Models in Marine Symbiosis (GBMF Grant #9324, to V.J.O), the U.S. Department of Energy BER(Award Number: DE-SC0022991 to V.J.O); and a FICUS grant (Award doi: 10.46936/fics.proj.2017.49956/60006219 to V.J.O.) through the U.S. Department of Energy Joint Genome Institute (https://ror.org/04xm1d337), a DOE Office of Science User Facility supported by the Office of Science of the U.S. Department of Energy operated under Contract No. DE-AC02-05CH11231). Deep sea samples for this project were collected in part through support from the National Science Foundation (OCE-1634002, to V.J.O) and the Science and Technology Center for Dark Energy Biosphere Investigations (C-DEBI, OCE-0939564, to V.J.O). R.L.-P. was funded by a Juan de la Cierva grant (FJC2019-041362-I) from the Spanish Ministerio de Ciencia e Innovación and by a Ramón y Cajal grant (RyC2021-031775-I) from the Spanish Ministerio de Ciencia e Innovación (MCIN/AEI/10.13039/501100011033) and the European Union («NextGenerationEU»/PRTR). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript

Data Availability

All the metagenome assembled genomes (MAGs) created for this study, along with associated metadata and biosample data are available from the NCBI database (BioProject: PRJNA762493). Metagenome assemblies from sorted aggregates that we used here are made available on the IMG database under the following IDs – 3300036218, 3300036221, 3300036226, 3300036304, 3300036329, 3300036259. The original tree files have been made available on the first author's Github page (https://github.com/ranjani-m/syntrophic-SRB) and they have also been uploaded as part of online supplementary data. All other relevant data is provided as supplementary material in this manuscript.

Conflict of Interest

The authors have declared that no competing interests exist.

Files

journal.pbio.3002292.pdf
Files (103.3 MB)
Name Size Download all
md5:b5b6922cb75147fd1314a15f5c385a11
4.3 MB Preview Download
md5:dfb4467dffa1f21e210f8757929a5d81
99.0 MB Preview Download

Additional details

Created:
November 3, 2023
Modified:
January 9, 2024