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http://hdl.handle.net/1893/24870
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DC Field | Value | Language |
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dc.contributor.author | Lyons, Philip | en_UK |
dc.contributor.author | Turnbull, James | en_UK |
dc.contributor.author | Dawson, Karl A | en_UK |
dc.contributor.author | Crumlish, Margaret | en_UK |
dc.date.accessioned | 2017-03-16T23:45:26Z | - |
dc.date.available | 2017-03-16T23:45:26Z | - |
dc.date.issued | 2017-02 | en_UK |
dc.identifier.uri | http://hdl.handle.net/1893/24870 | - |
dc.description.abstract | Aims This study focused on comparing the phylogenetic composition and functional potential of the intestinal microbiome of rainbow trout sourced from both farm and aquarium settings. Methods and Results Samples of distal intestinal contents were collected from fish and subjected to high throughput 16S rRNA sequencing, to accurately determine the composition of the intestinal microbiome. The predominant phyla identified from both groups were Tenericutes, Firmicutes, Proteobacteria, Spirochaetae and Bacteroidetes. A novel metagenomic tool, PICRUSt, was used to determine the functional potential of the bacterial communities present in the rainbow trout intestine. Pathways concerning membrane transport activity were dominant in the intestinal microbiome of all fish samples. Furthermore, this analysis revealed that gene pathways relating to metabolism, and in particular amino acid and carbohydrate metabolism, were upregulated in the rainbow trout intestinal microbiome. Conclusions The results suggest that the structure of the intestinal microbiome in farmed rainbow trout may be similar regardless of where the fish are located and hence could be shaped by host factors. Differences were, however, noted in the microbial community membership within the intestine of both fish populations, suggesting that more sporadic taxa could be unique to each environment and may have the ability to colonize the rainbow trout gastrointestinal tract. Finally, the functional analysis provides evidence that the microbiome of rainbow trout contains genes that could contribute to the metabolism of dietary ingredients and therefore may actively influence the digestive process in these fish. Significance and Impact of the Study To better understand and exploit the intestinal microbiome and its impact on fish health, it is vital to determine its structure, diversity and potential functional capacity. This study improves our knowledge of these areas and suggests that the intestinal microbiome of rainbow trout may play an important role in the digestive physiology of these fish. | en_UK |
dc.language.iso | en | en_UK |
dc.publisher | Wiley-Blackwell | en_UK |
dc.relation | Lyons P, Turnbull J, Dawson KA & Crumlish M (2017) Phylogenetic and functional characterization of the distal intestinal microbiome of rainbow trout Oncorhynchus mykiss from both farm and aquarium settings. Journal of Applied Microbiology, 122 (2), pp. 347-363. https://doi.org/10.1111/jam.13347 | en_UK |
dc.rights | This item has been embargoed for a period. During the embargo please use the Request a Copy feature at the foot of the Repository record to request a copy directly from the author. You can only request a copy if you wish to use this work for your own research or private study. | en_UK |
dc.subject | aquaculture | en_UK |
dc.subject | diversity | en_UK |
dc.subject | intestinal microbiology | en_UK |
dc.subject | metabolism | en_UK |
dc.subject | metagenomics | en_UK |
dc.title | Phylogenetic and functional characterization of the distal intestinal microbiome of rainbow trout Oncorhynchus mykiss from both farm and aquarium settings | en_UK |
dc.type | Journal Article | en_UK |
dc.rights.embargodate | 2017-12-07 | en_UK |
dc.rights.embargoreason | [JAM-2016-1811.R1.pdf] Publisher requires embargo of 12 months after formal publication. | en_UK |
dc.identifier.doi | 10.1111/jam.13347 | en_UK |
dc.identifier.pmid | 27860093 | en_UK |
dc.citation.jtitle | Journal of Applied Microbiology | en_UK |
dc.citation.issn | 1365-2672 | en_UK |
dc.citation.issn | 1364-5072 | en_UK |
dc.citation.volume | 122 | en_UK |
dc.citation.issue | 2 | en_UK |
dc.citation.spage | 347 | en_UK |
dc.citation.epage | 363 | en_UK |
dc.citation.publicationstatus | Published | en_UK |
dc.citation.peerreviewed | Refereed | en_UK |
dc.type.status | AM - Accepted Manuscript | en_UK |
dc.author.email | margaret.crumlish@stir.ac.uk | en_UK |
dc.citation.date | 06/12/2016 | en_UK |
dc.contributor.affiliation | University of Stirling | en_UK |
dc.contributor.affiliation | Institute of Aquaculture | en_UK |
dc.contributor.affiliation | Alltech | en_UK |
dc.contributor.affiliation | Complex Systems - LEGACY | en_UK |
dc.identifier.isi | WOS:000393883100005 | en_UK |
dc.identifier.scopusid | 2-s2.0-85006852787 | en_UK |
dc.identifier.wtid | 537949 | en_UK |
dc.contributor.orcid | 0000-0003-0741-9747 | en_UK |
dc.contributor.orcid | 0000-0002-7810-8172 | en_UK |
dc.date.accepted | 2016-11-02 | en_UK |
dcterms.dateAccepted | 2016-11-02 | en_UK |
dc.date.filedepositdate | 2017-01-30 | en_UK |
rioxxterms.apc | not required | en_UK |
rioxxterms.type | Journal Article/Review | en_UK |
rioxxterms.version | AM | en_UK |
local.rioxx.author | Lyons, Philip| | en_UK |
local.rioxx.author | Turnbull, James|0000-0003-0741-9747 | en_UK |
local.rioxx.author | Dawson, Karl A| | en_UK |
local.rioxx.author | Crumlish, Margaret|0000-0002-7810-8172 | en_UK |
local.rioxx.project | Internal Project|University of Stirling|https://isni.org/isni/0000000122484331 | en_UK |
local.rioxx.freetoreaddate | 2017-12-07 | en_UK |
local.rioxx.licence | http://www.rioxx.net/licenses/under-embargo-all-rights-reserved||2017-12-06 | en_UK |
local.rioxx.licence | http://www.rioxx.net/licenses/all-rights-reserved|2017-12-07| | en_UK |
local.rioxx.filename | JAM-2016-1811.R1.pdf | en_UK |
local.rioxx.filecount | 1 | en_UK |
local.rioxx.source | 1364-5072 | en_UK |
Appears in Collections: | Aquaculture Journal Articles |
Files in This Item:
File | Description | Size | Format | |
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JAM-2016-1811.R1.pdf | Fulltext - Accepted Version | 1.78 MB | Adobe PDF | View/Open |
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