Thermotogota diversity and distribution patterns revealed in Auka and JaichMaa ‘ja ‘ag hydrothermal vent fields in the Pescadero Basin, Gulf of California

Author:

Peña-Salinas Manet E.12ORCID,Speth Daan R.34ORCID,Utter Daniel R.4ORCID,Spelz Ronald M.1ORCID,Lim Sujung4ORCID,Zierenberg Robert5,Caress David W.6,Núñez Patricia G.2ORCID,Vázquez Roberto2ORCID,Orphan Victoria J.4ORCID

Affiliation:

1. Facultad de Ciencias Marinas, Universidad Autónoma de Baja California, Ensenada, Baja California, Mexico

2. Laboratorio de Astrobiología, Instituto de Astronomía, Universidad Nacional Autónoma de México, Ensenada, Baja California, Mexico

3. Division of Microbial Ecology, Center for Microbiology and Environmental Systems Science, University of Vienna, Vienna, Austria

4. Division of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California, United States

5. Department of Earth and Planetary Sciences, University of California, Davis, Davis, California, United States

6. Science Division, Monterey Bay Aquarium Research Institute, Moss Landing, California, United States

Abstract

Discovering new deep hydrothermal vent systems is one of the biggest challenges in ocean exploration. They are a unique window to elucidate the physical, geochemical, and biological processes that occur on the seafloor and are involved in the evolution of life on Earth. In this study, we present a molecular analysis of the microbial composition within the newly discovered hydrothermal vent field, JaichMaa ‘ja ‘ag, situated in the Southern Pescadero Basin within the Gulf of California. During the cruise expedition FK181031 in 2018, 33 sediment cores were collected from various sites within the Pescadero vent fields and processed for 16S rRNA amplicon sequence variants (ASVs) and geochemical analysis. Correlative analysis of the chemical composition of hydrothermal pore fluids and microbial abundances identified several sediment-associated phyla, including Thermotogota, that appear to be enriched in sediment horizons impacted by hydrothermal fluid flow. Comparative analysis of Thermotogota with the previously explored Auka hydrothermal vent field situated 2 km away displayed broad similarity between the two locations, although at finer scales (e.g., ASV level), there were notable differences that point to core-to-core and site-level factors revealing distinct patterns of distribution and abundance within these two sediment-hosted hydrothermal vent fields. These patterns are intricately linked to the specific physical and geochemical conditions defining each vent, illuminating the complexity of this unique deep ocean chemosynthetic ecosystem.

Funder

National Council of Humanities, Science and Technology of Mexico

UABC’s

NSF Ocean Sciences Postdoctoral Research Fellowship

National Science Foundation Center for Dark Energy Biosphere Investigations

NASA’s Interdisciplinary Consortia for Astrobiology Research

Publisher

PeerJ

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