Discovery of a novel sulfur-oxidizing endosymbiont (Ca. Vesicomyosocius atacamensis) associated with a newly described Archivesica species from the Atacama Trench

D Daniel Carrizo L Laura Sánchez-García J Javier Sánchez-España O Olga Prieto-Ballesteros I Isabel Herreros N Nikolaos V. Schizas G Guillermo Guzman A Alexis Gacitua A Antonio Molina M Mara Laguna-Castro M Miguel Arribas Tiemblo K Karolina Rivera-Osorio Óscar Ercilla Herrero V Victoria Baca A Amber Y. X. Wu C Carlos González-Silva R Rodrigo Azua-Bustos A Andrew Palmer C Caitlyn Hubric W Walter Siefeld Kowald M Muriel Rivera C Cristian Vargas J Jacek Wierzchos A Armando Azua-Bustos

Abstract

Abstract Here we report the microbiome composition and lipid (molecular and isotopic) profile of gills from Archivesica sp. Atacama., a new species of deep-sea bivalve family Vesicomyidae collected at 2839 m depth on the eastern slope of the Atacama Trench. Metabarcoding unveiled that 99.44% of the microbial ASVs (Amplicon Sequence Variant) obtained from this bivalve’s gills belonged to Ca. Vesicomyosocius sp. atacamensis, a bacterium closely related to symbionts of other vesicomycoids based on the 16 S rRNA phylogeny (a putative chemoautotrophic sulfide-oxidizing bacterium Form I RubisCO). Additional ASVs included microbes from taxa known for their ability to oxidize sulfur. Consistent with the microbiome composition, the analysis of lipid biomarkers in the gills revealed a high abundance of C 16:1ω7 and C 18:1ω7 fatty acids, well-known markers of sulfide-oxidizing (thiotrophic) bacterial metabolisms. The δ¹³C values of the bivalve’s bulk gills (-35.5‰) and of individual fatty acids (-40.0 to -46.5‰) were typical of bivalves hosting thiotrophic endosymbionts utilizing form I RubisCO for carbon fixation. In addition, nearby sediments showed a significant presence of terminal branched ( iso / anteiso C 13 -C 17 ), mid branched (10Me-C 16 and 10Me-C 18 ) and cyclopropyl (Cy 17 and Cy 19 ) fatty acids, coherent with sulfate-reducing bacterial (SRB) communities found by metabarcoding. These findings confirm that thiotrophic symbiosis provides energy for the new deep-sea Archivesica bivalve reported here.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 14, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (24)

D

Daniel Carrizo

L

Laura Sánchez-García

J

Javier Sánchez-España

O

Olga Prieto-Ballesteros

I

Isabel Herreros

N

Nikolaos V. Schizas

G

Guillermo Guzman

A

Alexis Gacitua

A

Antonio Molina

M

Mara Laguna-Castro

M

Miguel Arribas Tiemblo

K

Karolina Rivera-Osorio

Óscar Ercilla Herrero

V

Victoria Baca

A

Amber Y. X. Wu

C

Carlos González-Silva

R

Rodrigo Azua-Bustos

A

Andrew Palmer

C

Caitlyn Hubric

W

Walter Siefeld Kowald

M

Muriel Rivera

C

Cristian Vargas

J

Jacek Wierzchos

A

Armando Azua-Bustos