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dc.creatorOlesen, I.
dc.creatorBentsen, H.B.
dc.creatorPhillips, M.
dc.creatorPonzoni, R.W.
dc.date.accessioned2018-07-27T16:02:28Z
dc.date.available2018-07-27T16:02:28Z
dc.date.issued2015
dc.identifier3864_WF-3864.pdf
dc.identifier.citationJournal of Marine Science and Engineering, 3(2): 240-266 [open access]
dc.identifier.urihttps://hdl.handle.net/20.500.12348/64
dc.description.abstractThe annual production from global aquaculture has increased rapidly from 2.6 million tons or 3.9% of the total supply of fish, shellfish and mollusks in 1970, to 66.7 million tons or 42.2% in 2012, while capture fisheries have more or less leveled out at about 90 million tons per year since the turn of the century. Consequently, the future seafood supply is likely to depend on a further increase of aquaculture production. Unlike terrestrial animal farming, less than 10% of the aquaculture production comes from domesticated and selectively bred farm stocks. This situation has substantial consequences in terms of poorer resource efficiency, poorer product quality and poorer animal welfare. The history of biological and technical challenges when establishing selective breeding programs for aquaculture is discussed, and it is concluded that most aquaculture species may now be domesticated and improved by selection. However, the adoption of selective breeding in aquaculture is progressing slowly. This paper reports on a study carried out in 2012 to identify key issues to address in promoting the development of genetically improved aquaculture stocks.
dc.formatapplication/pdf
dc.publisherMDPI Publication
dc.rightsCC BY 4.0
dc.titleCan the global adoption of genetically improved farmed fish increase beyond 10%, and how?
dc.typeJournal Article
dcterms.bibliographicCitationOlesen, I. et al. (2015). Can the global adoption of genetically improved farmed fish increase beyond 10%, and how?. Journal of Marine Science and Engineering, 3(2): 240-266
dc.description.versionPeer Review
cg.description.wfprogramsandthemesSustainable Aquaculture
cg.identifier.worldfish3864
cg.subject.agrovocaquaculture
cg.subject.agrovocbreeding
cg.subject.agrovocgenetics
cg.subject.agrovoctilapia
cg.subject.cabitransgenic animals
cg.subject.worldfishGenetically Improved Farmed Tilapia (GIFT)
cg.contributor.affiliationNofima
cg.contributor.affiliationWorldFish
cg.contributor.affiliationUniversidad de la República
cg.identifier.statusOpen access
cg.contribution.worldfishauthorPhillips, M.
cg.description.themeSustainable aquaculture
cg.creator.idMichael Phillips: 0000-0002-0282-0286
worldfish.location.areaAsia


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