# Global patterns of diversity and metabolism of microbial communities in deep-sea hydrothermal vent deposits

**Authors:** Zhichao Zhou, Emily St. John, Karthik Anantharaman, Anna-Louise Reysenbach

PMC · DOI: 10.1186/s40168-022-01424-7 · Microbiome · 2022-12-27

## TL;DR

This study explores the diversity and metabolism of microbes in deep-sea hydrothermal vents, revealing new genera and metabolic interactions.

## Contribution

The study expands the known genomic diversity of thermophilic microbes in deep-sea hydrothermal vents and identifies novel genera and metabolic pathways.

## Key findings

- The dataset includes 3635 MAGs, with 511 novel or recently identified genera from deep-sea hydrothermal settings.
- Novel phyla JALSQH01 and JALWCF01 were identified, along with expanded diversity in Thermoproteia, CPR, and Chloroflexota.
- Metabolic analyses show sulfur and nitrogen 'handoffs' in microbial communities and distinct ecological roles of Campylobacteria and Gammaproteobacteria.

## Abstract

When deep-sea hydrothermal fluids mix with cold oxygenated fluids, minerals precipitate out of solution and form hydrothermal deposits. These actively venting deep-sea hydrothermal deposits support a rich diversity of thermophilic microorganisms which are involved in a range of carbon, sulfur, nitrogen, and hydrogen metabolisms. Global patterns of thermophilic microbial diversity in deep-sea hydrothermal ecosystems have illustrated the strong connectivity between geological processes and microbial colonization, but little is known about the genomic diversity and physiological potential of these novel taxa. Here we explore this genomic diversity in 42 metagenomes from four deep-sea hydrothermal vent fields and a deep-sea volcano collected from 2004 to 2018 and document their potential implications in biogeochemical cycles.

Our dataset represents 3635 metagenome-assembled genomes encompassing 511 novel and recently identified genera from deep-sea hydrothermal settings. Some of the novel bacterial (107) and archaeal genera (30) that were recently reported from the deep-sea Brothers volcano were also detected at the deep-sea hydrothermal vent fields, while 99 bacterial and 54 archaeal genera were endemic to the deep-sea Brothers volcano deposits. We report some of the first examples of medium- (≥ 50% complete, ≤ 10% contaminated) to high-quality (> 90% complete, < 5% contaminated) MAGs from phyla and families never previously identified, or poorly sampled, from deep-sea hydrothermal environments. We greatly expand the novel diversity of Thermoproteia, Patescibacteria (Candidate Phyla Radiation, CPR), and Chloroflexota found at deep-sea hydrothermal vents and identify a small sampling of two potentially novel phyla, designated JALSQH01 and JALWCF01. Metabolic pathway analysis of metagenomes provides insights into the prevalent carbon, nitrogen, sulfur, and hydrogen metabolic processes across all sites and illustrates sulfur and nitrogen metabolic “handoffs” in community interactions. We confirm that Campylobacteria and Gammaproteobacteria occupy similar ecological guilds but their prevalence in a particular site is driven by shifts in the geochemical environment.

Our study of globally distributed hydrothermal vent deposits provides a significant expansion of microbial genomic diversity associated with hydrothermal vent deposits and highlights the metabolic adaptation of taxonomic guilds. Collectively, our results illustrate the importance of comparative biodiversity studies in establishing patterns of shared phylogenetic diversity and physiological ecology, while providing many targets for enrichment and cultivation of novel and endemic taxa.

Video Abstract

Video Abstract

The online version contains supplementary material available at 10.1186/s40168-022-01424-7.

## Full-text entities

- **Genes:** MAG (myelin associated glycoprotein) [NCBI Gene 4099] {aka GMA, S-MAG, SIGLEC-4A, SIGLEC4, SIGLEC4A, SPG75}, A2M (alpha-2-macroglobulin) [NCBI Gene 2] {aka A2MD, CPAMD5, FWP007, S863-7}
- **Diseases:** V. lugosii (MESH:D015419), LS (MESH:D007888)
- **Species:** Bacteroidia (class) [taxon 200643], Candidatus Syntropharchaeum (genus) [taxon 1912923], Ardenticatenales (order) [taxon 1382929], Gemmatimonadota (phylum) [taxon 142182], Caldisphaera (genus) [taxon 200414], Methanocaldococcus (genus) [taxon 196118], Candidatus Aciduliprofundum boonei (species) [taxon 379547], Deinococcota (phylum) [taxon 1297], Candidatus Altimarinota (phylum) [taxon 363464], Acidobacteriota (phylum) [taxon 57723], Archaeoglobi (class) [taxon 183980], Shewanella sp. 14-1 (species) [taxon 208572], Patescibacteria group (clade) [taxon 1783273], Candidatus Zixiibacteriota (phylum) [taxon 1379697], Thermoproteota (phylum) [taxon 28889], Anaerolineales (order) [taxon 292629], Campylobacterales (order) [taxon 213849], Nitrospirota (phylum) [taxon 40117], Homo sapiens (human, species) [taxon 9606], Methanobacteriota (euryarchaeotes, phylum) [taxon 28890], Thermoplasmata (class) [taxon 183967], Clostridium sp. AN-D (species) [taxon 650396], Apocephalus praedator (species) [taxon 2490727], Bacteroidota (Bacteroides-Cytophaga-Flexibacter group, phylum) [taxon 976], Zestosphaera (genus) [taxon 2303493], Candidatus Saccharimonadota (candidate division TM7, phylum) [taxon 95818]
- **Cell lines:** S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232)

## Full text

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## Figures

10 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9793634/full.md

## References

134 references — full list in the complete paper: https://tomesphere.com/paper/PMC9793634/full.md

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Source: https://tomesphere.com/paper/PMC9793634