Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari
The gut microbiome of Antarctic fish species has rarely been studied due to difficulties in obtaining samples. The mackerel icefish, Champsocephalus gunnari, primary feeds on krill and is one of the key species in the food web of the Southern Ocean. In this study, we characterized the gut microbiota...
Published in: | Fishes |
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Main Authors: | , , , |
Format: | Text |
Language: | English |
Published: |
Multidisciplinary Digital Publishing Institute
2022
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Subjects: | |
Online Access: | https://doi.org/10.3390/fishes8010013 |
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author | Hokyung Song Seungyeon Lee Dong-Won Han Jin-Hyoung Kim |
author_facet | Hokyung Song Seungyeon Lee Dong-Won Han Jin-Hyoung Kim |
author_sort | Hokyung Song |
collection | MDPI Open Access Publishing |
container_issue | 1 |
container_start_page | 13 |
container_title | Fishes |
container_volume | 8 |
description | The gut microbiome of Antarctic fish species has rarely been studied due to difficulties in obtaining samples. The mackerel icefish, Champsocephalus gunnari, primary feeds on krill and is one of the key species in the food web of the Southern Ocean. In this study, we characterized the gut microbiota of C. gunnari by sequencing the V3–V4 region of the bacterial 16S rRNA gene based on the Illumina MiSeq sequencing platform. We collected three types of samples: (1) whole intestine, (2) intestinal wall, and (3) intestinal content. The results showed no significant difference in the alpha diversity between different sample types. However, the microbial community composition of intestinal wall samples was distinct from other sample types. The relative abundance of Photobacterium was higher in intestinal content compared with the walls, which could be due to their chitinolytic activity. In contrast, potential pathogens such as Escherichia, Shigella, and Pseudomonas relatively more abundant in the intestinal wall compared with the intestinal contents. Unlike the gut microbiome of other marine fish species, Vibrio and Lactobacillus were nearly absent in the gut microbiome of C. gunnari. Functional gene profile of the gut microbiome predicted by PICRUSt2 showed higher relative abundance of genes related to biodegradation of nutrients in intestinal content. In contrast, the relative abundance of genes related to biosynthesis of important metabolites, such as menaquinols, was higher in intestinal wall. The difference in the microbial community structure of intestinal wall and intestinal content found in our study supports niche separation in the gut environment and emphasizes the importance of collecting intestinal wall samples in addition to intestinal content samples to understand the full picture of gut microbiome. This is the first time that the gut microbiome of mackerel icefish has been characterized using next-generation sequencing. |
format | Text |
genre | Antarc* Antarctic Icefish Southern Ocean |
genre_facet | Antarc* Antarctic Icefish Southern Ocean |
geographic | Antarctic Southern Ocean |
geographic_facet | Antarctic Southern Ocean |
id | ftmdpi:oai:mdpi.com:/2410-3888/8/1/13/ |
institution | Open Polar |
language | English |
op_collection_id | ftmdpi |
op_coverage | agris |
op_doi | https://doi.org/10.3390/fishes8010013 |
op_relation | Welfare, Health and Disease https://dx.doi.org/10.3390/fishes8010013 |
op_rights | https://creativecommons.org/licenses/by/4.0/ |
op_source | Fishes; Volume 8; Issue 1; Pages: 13 |
publishDate | 2022 |
publisher | Multidisciplinary Digital Publishing Institute |
record_format | openpolar |
spelling | ftmdpi:oai:mdpi.com:/2410-3888/8/1/13/ 2025-01-16T19:05:47+00:00 Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari Hokyung Song Seungyeon Lee Dong-Won Han Jin-Hyoung Kim agris 2022-12-26 application/pdf https://doi.org/10.3390/fishes8010013 EN eng Multidisciplinary Digital Publishing Institute Welfare, Health and Disease https://dx.doi.org/10.3390/fishes8010013 https://creativecommons.org/licenses/by/4.0/ Fishes; Volume 8; Issue 1; Pages: 13 gut microbiome Antarctic fish mackerel icefish Champsocephalus gunnari high-throughput sequencing Text 2022 ftmdpi https://doi.org/10.3390/fishes8010013 2023-08-01T07:58:36Z The gut microbiome of Antarctic fish species has rarely been studied due to difficulties in obtaining samples. The mackerel icefish, Champsocephalus gunnari, primary feeds on krill and is one of the key species in the food web of the Southern Ocean. In this study, we characterized the gut microbiota of C. gunnari by sequencing the V3–V4 region of the bacterial 16S rRNA gene based on the Illumina MiSeq sequencing platform. We collected three types of samples: (1) whole intestine, (2) intestinal wall, and (3) intestinal content. The results showed no significant difference in the alpha diversity between different sample types. However, the microbial community composition of intestinal wall samples was distinct from other sample types. The relative abundance of Photobacterium was higher in intestinal content compared with the walls, which could be due to their chitinolytic activity. In contrast, potential pathogens such as Escherichia, Shigella, and Pseudomonas relatively more abundant in the intestinal wall compared with the intestinal contents. Unlike the gut microbiome of other marine fish species, Vibrio and Lactobacillus were nearly absent in the gut microbiome of C. gunnari. Functional gene profile of the gut microbiome predicted by PICRUSt2 showed higher relative abundance of genes related to biodegradation of nutrients in intestinal content. In contrast, the relative abundance of genes related to biosynthesis of important metabolites, such as menaquinols, was higher in intestinal wall. The difference in the microbial community structure of intestinal wall and intestinal content found in our study supports niche separation in the gut environment and emphasizes the importance of collecting intestinal wall samples in addition to intestinal content samples to understand the full picture of gut microbiome. This is the first time that the gut microbiome of mackerel icefish has been characterized using next-generation sequencing. Text Antarc* Antarctic Icefish Southern Ocean MDPI Open Access Publishing Antarctic Southern Ocean Fishes 8 1 13 |
spellingShingle | gut microbiome Antarctic fish mackerel icefish Champsocephalus gunnari high-throughput sequencing Hokyung Song Seungyeon Lee Dong-Won Han Jin-Hyoung Kim Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title | Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title_full | Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title_fullStr | Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title_full_unstemmed | Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title_short | Characterization of the Gut Microbiota of Mackerel Icefish, Champsocephalus gunnari |
title_sort | characterization of the gut microbiota of mackerel icefish, champsocephalus gunnari |
topic | gut microbiome Antarctic fish mackerel icefish Champsocephalus gunnari high-throughput sequencing |
topic_facet | gut microbiome Antarctic fish mackerel icefish Champsocephalus gunnari high-throughput sequencing |
url | https://doi.org/10.3390/fishes8010013 |