Characterization of the microbiome and bioluminescent symbionts across life stages of Ceratioid Anglerfishes of the Gulf of Mexico

Author:

Freed Lindsay L1,Easson Cole1,Baker Lydia J2,Fenolio Danté3,Sutton Tracey T1,Khan Yasmin1,Blackwelder Patricia14,Hendry Tory A2ORCID,Lopez Jose V1ORCID

Affiliation:

1. Halmos College of Natural Sciences and Oceanography, Nova Southeastern University, Dania Beach, FL, 33004 USA

2. Department of Microbiology, Cornell University, Ithaca, NY, 14850 USA

3. Center for Conservation and Research, San Antonio Zoo, San Antonio, TX, 78212 USA

4. University of Miami Center for Advanced Microscopy, Department of Chemistry, University of Miami, Coral Gables, FL, 33146 USA

Abstract

ABSTRACTThe interdependence of diverse organisms through symbiosis reaches even the deepest parts of the oceans. As part of the DEEPEND project (deependconsortium.org) research on deep Gulf of Mexico biodiversity, we profiled the bacterial communities (‘microbiomes’) and luminous symbionts of 36 specimens of adult and larval deep-sea anglerfishes of the suborder Ceratioidei using 16S rDNA. Transmission electron microscopy was used to characterize the location of symbionts in adult light organs (esca). Whole larval microbiomes, and adult skin and gut microbiomes, were dominated by bacteria in the genera Moritella and Pseudoalteromonas. 16S rDNA sequencing results from adult fishes corroborate the previously published identity of ceratioid bioluminescent symbionts and support the findings that these symbionts do not consistently exhibit host specificity at the host family level. Bioluminescent symbiont amplicon sequence variants were absent from larval ceratioid samples, but were found at all depths in the seawater, with a highest abundance found at mesopelagic depths. As adults spend the majority of their lives in the meso- and bathypelagic zones, the trend in symbiont abundance is consistent with their life history. These findings support the hypothesis that bioluminescent symbionts are not present throughout host development, and that ceratioids acquire their bioluminescent symbionts from the environment.

Funder

Gulf of Mexico Research Initiative

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

Reference48 articles.

1. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs;Altschul;Nucleic Acids Res,1997

2. Diverse deep-sea anglerfishes share a genetically reduced luminous symbiont that is acquired from the environment;Baker;eLife

3. Inter individual variations of the fish skin microbiota: host genetics basis of mutualism?;Boutin;PLoS One,2014

4. A complex journey: transmission of microbial symbionts;Bright;Nat Rev Microbiol,2010

5. Exact sequence variants should replace operational taxonomic units marker-gene data analysis;Callahan;ISME J,2017

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