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A simple microbiome in the European common cuttlefish, Sepia officinalis
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ABSTRACT
The European common cuttlefish,
Sepia officinali
s, is used extensively in biological and biomedical research yet its microbiome remains poorly characterized. We analyzed the microbiota of the digestive tract, gills, and skin in mariculture-raised
S. officinalis
using a combination of 16S rRNA amplicon sequencing, qPCR and fluorescence spectral imaging. Sequencing revealed a highly simplified microbiota consisting largely of two single bacterial amplicon sequence variants (ASVs) of Vibrionaceae and Piscirickettsiaceae. The esophagus was dominated by a single ASV of the genus
Vibrio
. Imaging revealed bacteria in the family Vibrionaceae distributed in a discrete layer that lines the esophagus. This
Vibrio
was also the primary ASV found in the microbiota of the stomach, cecum, and intestine, but occurred at lower abundance as determined by qPCR and was found only scattered in the lumen rather than in a discrete layer via imaging analysis. Treatment of animals with the commonly-used antibiotic enrofloxacin led to a nearly 80% reduction of the dominant
Vibrio
ASV in the esophagus but did not significantly alter the relative abundance of bacteria overall between treated versus control animals. Data from the gills was dominated by a single ASV in the family Piscirickettsiaceae, which imaging visualized as small clusters of cells. We conclude that bacteria belonging to the Gammaproteobacteria are the major symbionts of the cuttlefish
Sepia officinalis
cultured from eggs in captivity, and that the esophagus and gills are major colonization sites.
IMPORTANCE
Microbes can play critical roles in the physiology of their animal hosts, as evidenced in cephalopods by the role of
Vibrio (Aliivibrio) fischeri
in the light organ of the bobtail squid and the role of Alpha- and Gammaproteobacteria in the reproductive system and egg defense in a variety of cephalopods. We sampled the cuttlefish microbiome throughout the digestive tract, gills, and skin and found dense colonization of an unexpected site, the esophagus, by a microbe of the genus
Vibrio
, as well as colonization of gills by Piscirickettsiaceae. This finding expands the range of organisms and body sites known to be associated with
Vibrio
and is of potential significance for understanding host-symbiont associations as well as for understanding and maintaining the health of cephalopods in mariculture.
Title: A simple microbiome in the European common cuttlefish,
Sepia officinalis
Description:
ABSTRACT
The European common cuttlefish,
Sepia officinali
s, is used extensively in biological and biomedical research yet its microbiome remains poorly characterized.
We analyzed the microbiota of the digestive tract, gills, and skin in mariculture-raised
S.
officinalis
using a combination of 16S rRNA amplicon sequencing, qPCR and fluorescence spectral imaging.
Sequencing revealed a highly simplified microbiota consisting largely of two single bacterial amplicon sequence variants (ASVs) of Vibrionaceae and Piscirickettsiaceae.
The esophagus was dominated by a single ASV of the genus
Vibrio
.
Imaging revealed bacteria in the family Vibrionaceae distributed in a discrete layer that lines the esophagus.
This
Vibrio
was also the primary ASV found in the microbiota of the stomach, cecum, and intestine, but occurred at lower abundance as determined by qPCR and was found only scattered in the lumen rather than in a discrete layer via imaging analysis.
Treatment of animals with the commonly-used antibiotic enrofloxacin led to a nearly 80% reduction of the dominant
Vibrio
ASV in the esophagus but did not significantly alter the relative abundance of bacteria overall between treated versus control animals.
Data from the gills was dominated by a single ASV in the family Piscirickettsiaceae, which imaging visualized as small clusters of cells.
We conclude that bacteria belonging to the Gammaproteobacteria are the major symbionts of the cuttlefish
Sepia officinalis
cultured from eggs in captivity, and that the esophagus and gills are major colonization sites.
IMPORTANCE
Microbes can play critical roles in the physiology of their animal hosts, as evidenced in cephalopods by the role of
Vibrio (Aliivibrio) fischeri
in the light organ of the bobtail squid and the role of Alpha- and Gammaproteobacteria in the reproductive system and egg defense in a variety of cephalopods.
We sampled the cuttlefish microbiome throughout the digestive tract, gills, and skin and found dense colonization of an unexpected site, the esophagus, by a microbe of the genus
Vibrio
, as well as colonization of gills by Piscirickettsiaceae.
This finding expands the range of organisms and body sites known to be associated with
Vibrio
and is of potential significance for understanding host-symbiont associations as well as for understanding and maintaining the health of cephalopods in mariculture.
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